68 results on '"Julio Madrigal-Matute"'
Search Results
2. A major role of TWEAK/Fn14 axis as a therapeutic target for post-angioplasty restenosis
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Nerea Méndez-Barbero, Carmen Gutierrez-Muñoz, Julio Madrigal-Matute, Pablo Mínguez, Jesús Egido, Jean-Baptiste Michel, Jose L. Martín-Ventura, Vanesa Esteban, and Luis M. Blanco-Colio
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Medicine ,Medicine (General) ,R5-920 - Abstract
Background: Tumor necrosis factor-like weak inducer of apoptosis (Tnfsf12; TWEAK) and its receptor Fibroblast growth factor-inducible 14 (Tnfrsf12a; Fn14) participate in the inflammatory response associated with vascular remodeling. However, the functional effect of TWEAK on vascular smooth muscle cells (VSMCs) is not completely elucidated. Methods: Next generation sequencing-based methods were performed to identify genes and pathways regulated by TWEAK in VSMCs. Flow-citometry, wound-healing scratch experiments and transwell migration assays were used to analyze VSMCs proliferation and migration. Mouse wire injury model was done to evaluate the role of TWEAK/Fn14 during neointimal hyperplasia. Findings: TWEAK up-regulated 1611 and down-regulated 1091 genes in VSMCs. Using a gene-set enrichment method, we found a functional module involved in cell proliferation defined as the minimal network connecting top TWEAK up-regulated genes. In vitro experiments in wild-type or Tnfrsf12a deficient VSMCs demonstrated that TWEAK increased cell proliferation, VSMCs motility and migration. Mechanistically, TWEAK increased cyclins (cyclinD1), cyclin-dependent kinases (CDK4, CDK6) and decreased cyclin-dependent kinase inhibitors (p15lNK4B) mRNA and protein expression. Downregulation of p15INK4B induced by TWEAK was mediated by mitogen-activated protein kinase ERK and Akt activation.Tnfrsf12a or Tnfsf12 genetic depletion and pharmacological intervention with TWEAK blocking antibody reduced neointimal formation, decreasing cell proliferation, cyclin D1 and CDK4/6 expression, and increasing p15INK4B expression compared with wild type or IgG-treated mice in wire-injured femoral arteries. Finally, immunohistochemistry in human coronary arteries with stenosis or in-stent restenosis revealed high levels of Fn14, TWEAK and PCNA in VSMCs enriched areas of the neointima as compared with healthy coronary arteries. Interpretation: Our data define a major role of TWEAK/Fn14 in the control of VSMCs proliferation and migration during neointimal hyperplasia after wire injury in mice, and identify TWEAK/Fn14 as a potential target for treating in-stent restenosis. Fund: ISCiii-FEDER, CIBERCV and CIBERDEM. Keywords: Restenosis, Proliferation, Cyclins, TWEAK, Fn14
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- 2019
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3. Lanosterol Modulates TLR4-Mediated Innate Immune Responses in Macrophages
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Elisa Araldi, Marta Fernández-Fuertes, Alberto Canfrán-Duque, Wenwen Tang, Gary W. Cline, Julio Madrigal-Matute, Jordan S. Pober, Miguel A. Lasunción, Dianqing Wu, Carlos Fernández-Hernando, and Yajaira Suárez
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lanosterol ,innate immunity ,TLR4 ,macrophage ,Cyp51A1 ,Biology (General) ,QH301-705.5 - Abstract
Macrophages perform critical functions in both innate immunity and cholesterol metabolism. Here, we report that activation of Toll-like receptor 4 (TLR4) in macrophages causes lanosterol, the first sterol intermediate in the cholesterol biosynthetic pathway, to accumulate. This effect is due to type I interferon (IFN)-dependent histone deacetylase 1 (HDAC1) transcriptional repression of lanosterol-14α-demethylase, the gene product of Cyp51A1. Lanosterol accumulation in macrophages, because of either treatment with ketoconazole or induced conditional disruption of Cyp51A1 in mouse macrophages in vitro, decreases IFNβ-mediated signal transducer and activator of transcription (STAT)1-STAT2 activation and IFNβ-stimulated gene expression. These effects translate into increased survival to endotoxemic shock by reducing cytokine secretion. In addition, lanosterol accumulation increases membrane fluidity and ROS production, thus potentiating phagocytosis and the ability to kill bacteria. This improves resistance of mice to Listeria monocytogenes infection by increasing bacterial clearance in the spleen and liver. Overall, our data indicate that lanosterol is an endogenous selective regulator of macrophage immunity.
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- 2017
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4. Proteome-wide analysis of chaperone-mediated autophagy targeting motifs.
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Philipp Kirchner, Mathieu Bourdenx, Julio Madrigal-Matute, Simoni Tiano, Antonio Diaz, Boris A Bartholdy, Britta Will, and Ana Maria Cuervo
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Biology (General) ,QH301-705.5 - Abstract
Chaperone-mediated autophagy (CMA) contributes to the lysosomal degradation of a selective subset of proteins. Selectivity lies in the chaperone heat shock cognate 71 kDa protein (HSC70) recognizing a pentapeptide motif (KFERQ-like motif) in the protein sequence essential for subsequent targeting and degradation of CMA substrates in lysosomes. Interest in CMA is growing due to its recently identified regulatory roles in metabolism, differentiation, cell cycle, and its malfunctioning in aging and conditions such as cancer, neurodegeneration, or diabetes. Identification of the subset of the proteome amenable to CMA degradation could further expand our understanding of the pathophysiological relevance of this form of autophagy. To that effect, we have performed an in silico screen for KFERQ-like motifs across proteomes of several species. We have found that KFERQ-like motifs are more frequently located in solvent-exposed regions of proteins, and that the position of acidic and hydrophobic residues in the motif plays the most important role in motif construction. Cross-species comparison of proteomes revealed higher motif conservation in CMA-proficient species. The tools developed in this work have also allowed us to analyze the enrichment of motif-containing proteins in biological processes on an unprecedented scale and discover a previously unknown association between the type and combination of KFERQ-like motifs in proteins and their participation in specific biological processes. To facilitate further analysis by the scientific community, we have developed a free web-based resource (KFERQ finder) for direct identification of KFERQ-like motifs in any protein sequence. This resource will contribute to accelerating understanding of the physiological relevance of CMA.
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- 2019
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5. ANGPTL4 deficiency in haematopoietic cells promotes monocyte expansion and atherosclerosis progression
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Binod Aryal, Noemi Rotllan, Elisa Araldi, Cristina M. Ramírez, Shun He, Benjamin G. Chousterman, Ashley M. Fenn, Amarylis Wanschel, Julio Madrigal-Matute, Nikhil Warrier, Jose L. Martín-Ventura, Filip K. Swirski, Yajaira Suárez, and Carlos Fernández-Hernando
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Science - Abstract
Angiopoietin-like 4 protein (ANGPTL4) is a regulator of lipoprotein metabolism whose role in atherosclerosis has been controversial. Here the authors show that ANGPTL4 deficiency in haematopoietic cells increases atherogenesis by promoting myeloid progenitor cell expansion and differentiation, foam cell formation and vascular inflammation.
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- 2016
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6. Nrf2 Activation Provides Atheroprotection in Diabetic Mice Through Concerted Upregulation of Antioxidant, Anti-inflammatory, and Autophagy Mechanisms
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Iolanda Lazaro, Laura Lopez-Sanz, Susana Bernal, Ainhoa Oguiza, Carlota Recio, Ana Melgar, Luna Jimenez-Castilla, Jesus Egido, Julio Madrigal-Matute, and Carmen Gomez-Guerrero
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nuclear factor (erythroid-derived 2)-like 2 ,redox balance ,autophagy ,inflammation ,diabetes complications ,Therapeutics. Pharmacology ,RM1-950 - Abstract
Interactive relationships between metabolism, inflammation, oxidative stress, and autophagy in the vascular system play a key role in the pathogenesis of diabetic cardiovascular disease. Nuclear factor (erythroid-derived 2)-like 2 (Nrf2) is a stress-sensitive guarantor of cellular homeostasis, which cytoprotective contributions extend beyond the antioxidant defense. We investigated the beneficial effects and underlying mechanisms of the Nrf2 inducer tert-butyl hydroquinone (tBHQ) on diabetes-driven atherosclerosis. In the experimental model of streptozotocin-induced diabetes in apolipoprotein E-deficient mice, treatment with tBHQ increased Nrf2 activity in macrophages and vascular smooth muscle cells within atherosclerotic lesions. Moreover, tBHQ significantly decreased the size, extension and lipid content of atheroma plaques, and attenuated inflammation by reducing lesional macrophages (total number and M1/M2 phenotype balance), foam cell size and chemokine expression. Atheroprotection was accompanied by both systemic and local antioxidant effects, characterized by lower levels of superoxide anion and oxidative DNA marker 8-hydroxy-2′-deoxyguanosine, reduced expression of NADPH oxidase subunits, and increased antioxidant capacity. Interestingly, tBHQ treatment upregulated the gene and protein expression of autophagy-related molecules and also enhanced autophagic flux in diabetic mouse aorta. In vitro, Nrf2 activation by tBHQ suppressed cytokine-induced expression of pro-inflammatory and oxidative stress genes, altered macrophage phenotypes, and promoted autophagic activity. Our results reinforce pharmacological Nrf2 activation as a promising atheroprotective approach in diabetes, according to the plethora of cytoprotective mechanisms involved in the resolution of inflammation and oxidative stress, and restoring autophagy.
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- 2018
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7. RNA binding protein HuR regulates the expression of ABCA1[S]
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Cristina M. Ramírez, Chin Sheng Lin, Kotb Abdelmohsen, Leigh Goedeke, Je-Hyun Yoon, Julio Madrigal-Matute, Jose L. Martin-Ventura, Dat T. Vo, Philip J. Uren, Luiz O. Penalva, Myriam Gorospe, and Carlos Fernández-Hernando
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ATP binding cassette transporter A1 ,human antigen R ,posttranscriptional regulation ,lipid homeostasis ,cholesterol efflux ,Biochemistry ,QD415-436 - Abstract
ABCA1 is a major regulator of cellular cholesterol efflux and plasma HDL biogenesis. Even though the transcriptional activation of ABCA1 is well established, the posttranscriptional regulation of ABCA1 expression is poorly understood. Here, we investigate the potential contribution of the RNA binding protein (RBP) human antigen R (HuR) on the posttranscriptional regulation of ABCA1 expression. RNA immunoprecipitation assays demonstrate a direct interaction between HuR and ABCA1 mRNA. We found that HuR binds to the 3′ untranslated region of ABCA1 and increases ABCA1 translation, while HuR silencing reduces ABCA1 expression and cholesterol efflux to ApoA1 in human hepatic (Huh-7) and monocytic (THP-1) cells. Interestingly, cellular cholesterol levels regulate the expression, intracellular localization, and interaction between HuR and ABCA1 mRNA. Finally, we found that HuR expression was significantly increased in macrophages from human atherosclerotic plaques, suggesting an important role for this RBP in controlling macrophage cholesterol metabolism in vivo. In summary, we have identified HuR as a novel posttranscriptional regulator of ABCA1 expression and cellular cholesterol homeostasis, thereby opening new avenues for increasing cholesterol efflux from atherosclerotic foam macrophages and raising circulating HDL cholesterol levels.
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- 2014
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8. Bile Acids: The Hidden Gateway Behind Autophagy Modulation in the Liver
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Julio Madrigal-Matute, PhD
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Diseases of the digestive system. Gastroenterology ,RC799-869 - Published
- 2017
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9. Proteomic Analysis of Intraluminal Thrombus Highlights Complement Activation in Human Abdominal Aortic Aneurysms
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Roxana Martinez-Pinna, Julio Madrigal-Matute, Carlos Tarin, Elena Burillo, Margarita Esteban-Salan, Pastor Vargas, Carlos, Jes S. Lindholt, Juan A. Lopez, Enrique Calvo, Melina Vega de Ceniga, Olivier Meilhac, Jesus Egido, Luis M. Blanco-Colio, Jean-Baptiste Michel, Jose L. Martin-Ventura, Roxana Martinez-Pinna, Julio Madrigal-Matute, Carlos Tarin, Elena Burillo, Margarita Esteban-Salan, Pastor Vargas, Carlos, Jes S. Lindholt, Juan A. Lopez, Enrique Calvo, Melina Vega de Ceniga, Olivier Meilhac, Jesus Egido, Luis M. Blanco-Colio, Jean-Baptiste Michel, and Jose L. Martin-Ventura
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Objective: To identify proteins related to intraluminal thrombus biological activities that could help to find novel pathological mechanisms and therapeutic targets for human abdominal aortic aneurysm (AAA). Approach and results: Tissue-conditioned media from patients with AAA were analyzed by a mass spectrometry-based strategy using liquid chromatography coupled to tandem mass spectrometry. Global pathway analysis by Ingenuity software highlighted the presence of several circulating proteins, among them were proteins from the complement system. Complement C3 concentration and activation were assessed in plasma from AAA patients (small AAA, AAA diameter=3-5 cm and large AAA, AAA diameter >5 cm), showing decreased C3 levels and activation in large AAA patients. No association of a combination of single-nucleotide polymorphisms in complement genes between large and small AAA patients was observed. Intense extracellular C3 inmunostaining, along with C9, was observed in AAA thrombus. Analysis of C3 in AAA tissue homogenates and tissue-conditioned media showed increased levels of C3 in AAA thrombus, as well as proteolytic fragments (C3a/C3c/C3dg), suggesting its local deposition and activation. Finally, the functional role of local complement activation in polymorphonuclear (PMN) cell activation was tested, showing that C3 blockade by anti-C3 antibody was able to decrease thrombus-induced neutrophil chemotaxis and reactive oxygen species production. Conclusions: A decrease of systemic C3 concentration and activity in the later stages of AAA associated with local complement retention, consumption, and proteolysis in the thrombus could induce PMN chemotaxis and activation, playing a detrimental role in AAA progression., Depto. de Bioquímica y Biología Molecular, Fac. de Ciencias Químicas, TRUE, pub
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- 2024
10. CHAPERONE-MEDIATED AUTOPHAGY PROTECTS AGAINST ATHEROSCLEROSIS
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Julio Madrigal-Matute, Ana Maria Cuervo, Judith C. Sluimer, Pathologie, and RS: Carim - B07 The vulnerable plaque: makers and markers
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insulin ,cholesterol ,Chaperone-Mediated Autophagy ,Mice, Transgenic ,Cell Biology ,Atherosclerosis ,Cardiovascular disease ,Lipids ,macrophages ,smooth muscle cells ,Mice ,lysosomes ,inflammation ,Autophagy ,Animals ,Humans ,Molecular Biology ,Molecular Chaperones - Abstract
Atherosclerosis, the leading cause of cardiovascular death, is driven by hyperlipidemia, inflammation and aggravated by aging. As chaperone-mediated autophagy (CMA), a selective type of lysosomal degradation for intracellular proteins, diminishes with age and is inhibited by lipid excess, we studied if the decline in CMA could contribute to atherosclerosis pathogenesis. We found that CMA declines in human and murine vasculature with disease progression. Inhibition and reactivation of CMA using transgenic mouse models establishes a protective effect of CMA against atherogenesis. CMA upregulation ameliorates both systemic metabolic parameters, and vascular cell function. Our work suggests CMA reactivation could be a viable therapeutic strategy to prevent and reduce cardiovascular disease.
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- 2022
11. Protective role of chaperone-mediated autophagy against atherosclerosis
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Julio Madrigal-Matute, Jenny de Bruijn, Kim van Kuijk, Dario F. Riascos-Bernal, Antonio Diaz, Inmaculada Tasset, Adrián Martín-Segura, Marion J. J. Gijbels, Bianca Sander, Susmita Kaushik, Erik A. L. Biessen, Simoni Tiano, Mathieu Bourdenx, Gregory J. Krause, Ian McCracken, Andrew H. Baker, Han Jin, Nicholas E. S. Sibinga, Jose Javier Bravo-Cordero, Fernando Macian, Rajat Singh, Patrick C. N. Rensen, Jimmy F. P. Berbée, Gerard Pasterkamp, Judith C. Sluimer, Ana Maria Cuervo, Pathologie, RS: Carim - B07 The vulnerable plaque: makers and markers, RS: GROW - R3 - Innovative Cancer Diagnostics & Therapy, Medical Biochemistry, ACS - Atherosclerosis & ischemic syndromes, and AII - Inflammatory diseases
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PLAQUES ,INSULIN-RESISTANCE ,proteolysis ,Multidisciplinary ,RECEPTOR ,CHOLESTEROL ,SMOOTH-MUSCLE-CELLS ,DEATH ,PROTEIN ,Chaperone-Mediated Autophagy ,vascular disease ,DEGRADATION ,Atherosclerosis ,lipid challenge ,humanities ,DEFICIENCY ,Disease Models, Animal ,Mice ,lysosomes ,atherosclerotic plaques ,Animals ,MACROPHAGES ,health care economics and organizations - Abstract
Proceedings of the National Academy of Sciences of the United States of America 119(14), e2121133119 (2022). doi:10.1073/pnas.2121133119, Published by National Acad. of Sciences, Washington, DC
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- 2022
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12. Cav-1 (Caveolin-1) Deficiency Increases Autophagy in the Endothelium and Attenuates Vascular Inflammation and Atherosclerosis
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Xinbo Zhang, Carlos Fernández-Hernando, William C. Sessa, Cristina M. Ramírez, Marta Torrecilla-Parra, Ana Maria Cuervo, Yajaira Suárez, Binod Aryal, Xinran Liu, Antonio Diaz, and Julio Madrigal-Matute
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Male ,Vasculitis ,0301 basic medicine ,autophagy ,caveolin-1 ,Endothelium ,Caveolin 1 ,030204 cardiovascular system & hematology ,Mice ,03 medical and health sciences ,Membrane Microdomains ,0302 clinical medicine ,Caveolae ,Animals ,Humans ,Medicine ,No production ,Aorta ,Mice, Knockout ,Basic Sciences ,business.industry ,Vascular inflammation ,Adenine ,Autophagy ,Endothelial Cells ,Atherosclerosis ,Cell biology ,Mice, Inbred C57BL ,030104 developmental biology ,medicine.anatomical_structure ,Receptors, LDL ,Transcytosis ,Diet, Western ,caveolae ,ComputingMethodologies_DOCUMENTANDTEXTPROCESSING ,NIH 3T3 Cells ,cardiovascular system ,Female ,Endothelium, Vascular ,Cardiology and Cardiovascular Medicine ,business ,Lipoprotein - Abstract
Supplemental Digital Content is available in the text., Objective: Endothelial Cav-1 (caveolin-1) expression plays a relevant role during atherogenesis by controlling NO production, vascular inflammation, LDL (low-density lipoprotein) transcytosis, and extracellular matrix remodeling. Additional studies have identified cholesterol-rich membrane domains as important regulators of autophagy by recruiting ATGs (autophagy-related proteins) to the plasma membrane. Here, we investigate how the expression of Cav-1 in the aortic endothelium influences autophagy and whether enhanced autophagy contributes to the atheroprotective phenotype observed in Cav-1–deficient mice. Approach and Results: To analyze the impact of Cav-1 deficiency on regulation of autophagy in the aortic endothelium during the progression of atherosclerosis, we fed Ldlr−/− and Cav-1−/−Ldlr−/− mice a Western diet and assessed autophagy in the vasculature. We observe that the absence of Cav-1 promotes autophagy activation in athero-prone areas of the aortic endothelium by enhancing autophagic flux. Mechanistically, we found that Cav-1 interacts with the ATG5-ATG12 complex and influences the cellular localization of autophagosome components in lipid rafts, which controls the autophagosome formation and autophagic flux. Pharmacological inhibition of autophagy attenuates the atheroprotection observed in Cav-1−/− mice by increasing endothelial inflammation and macrophage recruitment, identifying a novel molecular mechanism by which Cav-1 deficiency protects against the progression of atherosclerosis. Conclusions: These results identify Cav-1 as a relevant regulator of autophagy in the aortic endothelium and demonstrate that pharmacological suppression of autophagic flux in Cav-1–deficient mice attenuates the atheroprotection observed in Cav-1−/− mice. Additionally, these findings suggest that activation of endothelial autophagy by blocking Cav-1 might provide a potential therapeutic strategy for cardiovascular diseases including atherosclerosis.
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- 2020
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13. The lysosomal proteome of senescent cells contributes to the senescence secretome
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Miguel Rovira, Rebecca Sereda, David Pladevall‐Morera, Valentina Ramponi, Ines Marin, Mate Maus, Julio Madrigal‐Matute, Antonio Díaz, Fernando García, Javier Muñoz, Ana María Cuervo, and Manuel Serrano
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Proteomics ,Aging ,Lisosomes ,Proteome ,CELLULAR SENESCENCE ,Age factors in disease ,Cell Biology ,SASP ,Cathepsins ,Lysosome ,Factors d'edat en les malalties ,Exocytosis ,Autophagy ,Cytokines ,Humans ,Protease Inhibitors ,Lysosomes ,Melanoma ,Biomarkers ,Cellular Senescence ,Arylsulfatases ,Monomeric GTP-Binding Proteins ,Secretome - Abstract
Senescent cells accumulate in tissues over time, favoring the onset and progression of multiple age-related diseases. Senescent cells present a remarkable increase in lysosomal mass and elevated autophagic activity. Here, we report that two main autophagic pathways macroautophagy (MA) and chaperone-mediated autophagy (CMA) are constitutively upregulated in senescent cells. Proteomic analyses of the subpopulations of lysosomes preferentially engaged in each of these types of autophagy revealed profound quantitative and qualitative changes in senescent cells, affecting both lysosomal resident proteins and cargo proteins delivered to lysosomes for degradation. These studies have led us to identify resident lysosomal proteins that are highly augmented in senescent cells and can be used as novel markers of senescence, such as arylsulfatase ARSA. The abundant secretome of senescent cells, known as SASP, is considered their main pathological mediator; however, little is known about the mechanisms of SASP secretion. Some secretory cells, including melanocytes, use the small GTPase RAB27A to perform lysosomal secretion. We found that this process is exacerbated in the case of senescent melanoma cells, as revealed by the exposure of lysosomal membrane integral proteins LAMP1 and LAMP2 in their plasma membrane. Interestingly, a subset of SASP components, including cytokines CCL2, CCL3, CXCL12, cathepsin CTSD, or the protease inhibitor SERPINE1, are secreted in a RAB27A-dependent manner in senescent melanoma cells. Finally, proteins previously identified as plasma biomarkers of aging are highly enriched in the lysosomes of senescent cells, including CTSD. We conclude that the lysosomal proteome of senescent cells is profoundly reconfigured, and that some senescent cells can be highly active in lysosomal exocytosis.© 2022 The Authors. Aging Cell published by Anatomical Society and John Wiley & Sons Ltd.
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- 2022
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14. Colorectal cancer and microbiota modulation for clinical use. A systematic review
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Julio Madrigal-Matute and Sara Bañón-Escandell
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Cancer Research ,medicine.medical_specialty ,Nutrition and Dietetics ,biology ,Colorectal cancer ,business.industry ,Colorectal Cancer Prevention ,Medicine (miscellaneous) ,Gut flora ,medicine.disease ,biology.organism_classification ,Treatment efficacy ,Systematic review ,Oncology ,Cancer incidence ,medicine ,Etiology ,Cancer development ,Intensive care medicine ,business - Abstract
Colorectal cancer is one of the top contributors to the global burden of cancer incidence and mortality with genetic and environmental factors contributing to its etiology. Modifiable or environmental factors can be the cause of up to 60% of the risk of developing colorectal cancer. Hence, there is a growing interest in specifically defining what can be improved in our lifestyle to reduce this risk, improve the effectiveness of treatments, reduce side effects, and decrease the risk of recurrence. One of the elements directly related to lifestyle is gut microbiota. The microbial ecosystem has a vital role in colorectal cancer prevention and antitumoral response through modulation of the immune system and production of short-chain fatty acids. Numerous approaches have been used to identify healthy microbiota that can reduce the risk of cancer development, improve treatment efficacy, and reduce side effects.Scientific literature in this subject is growing exponentially and, therefore, systematic reviews and meta-analysis are required to ensure that appropriate recommendations are given to patients.This work aimed to perform a systematic analysis of the published literature to elucidate whether microbiota modulation through pre-, pro-, symbiotic treatment and/or nutritional intervention can be beneficial for patients diagnosed with colorectal cancer.Detailed analysis of published studies shows that some prebiotics, such as inulin and resistant starch, probiotics such as lactic strains producers of short-chain fatty acids, and consumption of unprocessed plant products, can be effective recommendations for patients diagnosed with colorectal cancer. This advice should always be individually tailored and followed up by a healthcare professional with expertise in the field.
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- 2021
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15. Comprehensive autophagy evaluation in cardiac disease models
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Toshiro Saito, Nina Kaludercic, Federico Pietrocola, Maria Chiara Maiuri, Susmita Kaushik, Álvaro F. Fernández, Sebastiano Sciarretta, Francesca Castoldi, Jihoon Nah, Tomokazu Murakawa, Lorenza Iolanda Tsansizi, Martina Semenzato, Julio Madrigal-Matute, Risa Mukai, Yun Chen, Jumpei Ito, Salwa Sebti, Jenny de Bruijn, Centre de Recherche des Cordeliers (CRC (UMR_S_1138 / U1138)), École pratique des hautes études (EPHE), Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Sorbonne Université (SU)-Université de Paris (UP), Albert Einstein College of Medicine [New York], University of Texas Southwestern Medical Center, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University [Maastricht], RWTH Aachen University, King‘s College London, Rutgers New Jersey Medical School (NJMS), Rutgers University System (Rutgers), Barcelona Institute of Science and Technology (BIST), Yamaguchi University [Yamaguchi], University of Texas Southwestern Medical Center [Dallas], Universita degli Studi di Padova, Università degli Studi di Roma 'La Sapienza' = Sapienza University [Rome], Istituti di Ricovero e Cura a Carattere Scientifico (IRCCS), Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Sorbonne Université (SU)-Université Paris Cité (UPCité), Rheinisch-Westfälische Technische Hochschule Aachen University (RWTH), Università degli Studi di Padova = University of Padua (Unipd), Università degli Studi di Roma 'La Sapienza' = Sapienza University [Rome] (UNIROMA), Gestionnaire, Hal Sorbonne Université, Kaludercic, N., Maiuri, M. C., Kaushik, S., Fernandez, A. F., De Bruijn, J., Castoldi, F., Chen, Y., Ito, J., Mukai, R., Murakawa, T., Nah, J., Pietrocola, F., Saito, T., Sebti, S., Semenzato, M., Tsansizi, L., Sciarretta, S., and Madrigal-Matute, J.
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Autosis ,Physiology ,Autosi ,Autophagy-Related Proteins ,Cellular homeostasis ,[SDV.BC.BC]Life Sciences [q-bio]/Cellular Biology/Subcellular Processes [q-bio.SC] ,Disease ,MOUSE ,Mitochondria, Heart ,Cardiac disease ,0302 clinical medicine ,Chaperone-mediated autophagy ,Cardiac diseases ,Mitophagy ,0303 health sciences ,MOLECULAR-MECHANISMS ,ACTIVATED PROTEIN-KINASE ,Heart ,[SDV.MHEP.CSC] Life Sciences [q-bio]/Human health and pathology/Cardiology and cardiovascular system ,3. Good health ,Heart Disease ,Autophagy-Related Protein ,Cardiology and Cardiovascular Medicine ,Human ,Signal Transduction ,FLUX ,Programmed cell death ,Heart Diseases ,CALORIC RESTRICTION MIMETICS ,Reviews ,Biology ,03 medical and health sciences ,[SDV.MHEP.CSC]Life Sciences [q-bio]/Human health and pathology/Cardiology and cardiovascular system ,Physiology (medical) ,[SDV.BC.BC] Life Sciences [q-bio]/Cellular Biology/Subcellular Processes [q-bio.SC] ,Autophagy ,Animals ,Humans ,030304 developmental biology ,Animal ,Mechanism (biology) ,Myocardium ,Critical pathway ,Editor's Choice ,Disease Models, Animal ,CELL-DEATH ,MYOCARDIAL AUTOPHAGY ,MITOCHONDRIAL AUTOPHAGY ,Neuroscience ,030217 neurology & neurosurgery - Abstract
Autophagy is a highly conserved recycling mechanism essential for maintaining cellular homeostasis. The pathophysiological role of autophagy has been explored since its discovery 50 years ago, but interest in autophagy has grown exponentially over the last years. Many researchers around the globe have found that autophagy is a critical pathway involved in the pathogenesis of cardiac diseases. Several groups have created novel and powerful tools for gaining deeper insights into the role of autophagy in the aetiology and development of pathologies affecting the heart. Here, we discuss how established and emerging methods to study autophagy can be used to unravel the precise function of this central recycling mechanism in the cardiac system.
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- 2019
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16. A major role of TWEAK/Fn14 axis as a therapeutic target for post-angioplasty restenosis
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Pablo Minguez, Jesús Egido, Nerea Méndez-Barbero, José Luis Martín-Ventura, Jean-Baptiste Michel, Carmen Gutiérrez-Muñoz, Vanesa Esteban, Julio Madrigal-Matute, Luis Miguel Blanco-Colio, UAM. Departamento de Medicina, and Instituto de Investigación Sanitaria Fundación Jiménez Díaz (IIS-FJD)
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0301 basic medicine ,MAPK/ERK pathway ,Research paper ,Proliferation ,lcsh:Medicine ,Mice ,0302 clinical medicine ,Postoperative Complications ,Restenosis ,Cell Movement ,TWEAK ,Gene Regulatory Networks ,Neointimal hyperplasia ,Mice, Knockout ,lcsh:R5-920 ,biology ,Cytokine TWEAK ,General Medicine ,Flow Cytometry ,Immunohistochemistry ,TWEAK Receptor ,030220 oncology & carcinogenesis ,TNFSF12 ,lcsh:Medicine (General) ,Signal Transduction ,Neointima ,Medicina ,Myocytes, Smooth Muscle ,Models, Biological ,General Biochemistry, Genetics and Molecular Biology ,Coronary Restenosis ,03 medical and health sciences ,Downregulation and upregulation ,Cyclins ,medicine ,Animals ,Protein kinase B ,Cell Proliferation ,business.industry ,Gene Expression Profiling ,Angioplasty ,lcsh:R ,Fn14 ,medicine.disease ,Disease Models, Animal ,030104 developmental biology ,Gene Expression Regulation ,biology.protein ,Cancer research ,Cyclin-dependent kinase 6 ,business ,Tunica Intima ,Biomarkers - Abstract
Background: Tumor necrosis factor-like weak inducer of apoptosis (Tnfsf12; TWEAK) and its receptor Fibroblast growth factor-inducible 14 (Tnfrsf12a; Fn14) participate in the inflammatory response associated with vascular remodeling.However, the functional effect ofTWEAK on vascular smoothmuscle cells (VSMCs) is not completely elucidated. Methods: Next generation sequencing-based methodswere performed to identify genes and pathways regulated by TWEAK in VSMCs. Flow-citometry, wound-healing scratch experiments and transwellmigration assays were used to analyze VSMCs proliferation and migration. Mouse wire injury model was done to evaluate the role of TWEAK/Fn14 during neointimal hyperplasia. Findings: TWEAK up-regulated 1611 and down-regulated 1091 genes in VSMCs. Using a gene-set enrichment method,we found a functionalmodule involved in cell proliferation defined as the minimal network connecting top TWEAK up-regulated genes. In vitro experiments in wild-type or Tnfrsf12a deficient VSMCs demonstrated that TWEAK increased cell proliferation, VSMCs motility and migration. Mechanistically, TWEAK increased cyclins (cyclinD1), cyclin-dependent kinases (CDK4, CDK6) and decreased cyclin-dependent kinase inhibitors (p15lNK4B) mRNA and protein expression. Downregulation of p15INK4B induced by TWEAK was mediated by mitogen-activated protein kinase ERK and Akt activation. Tnfrsf12a or Tnfsf12 genetic depletion and pharmacological intervention with TWEAK blocking antibody reduced neointimal formation, decreasing cell proliferation, cyclin D1 and CDK4/6 expression, and increasing p15INK4B expression compared with wild type or IgG-treated mice in wire-injured femoral arteries. Finally, immunohistochemistry in human coronary arteries with stenosis or in-stent restenosis revealed high levels of Fn14, TWEAK and PCNA in VSMCs enriched areas of the neointima as compared with healthy coronary arteries. Interpretation: Our data define a major role of TWEAK/Fn14 in the control of VSMCs proliferation and migration during neointimal hyperplasia after wire injury in mice, and identify TWEAK/Fn14 as a potential target for treating in-stent restenosis., This work was supported by Instituto de Salud Carlos III (Fondo de Investigaciones Sanitarias ISCiii/FEDER PI13/00395; PI16/01419; PI17/ 01495) and Spanish Biomedical Research Centre in Cardiovascular Disease (CIBERCV) and Metabolic Diseases and Diabetes (CIBERDEM). PM was supported by ISCIII Miguel Servet Program (CP16/00116). CGM was supported by Fundación Conchita Rábago. NMB and VE were supported by the Spanish Ministry of Economy and Competitiveness (Juan de la Cierva IJCI-2016-29630 and Ramón y Ramón Cajal Program RyC-2013-12880, respectively). JMM has been supported a postdoctoral fellowship fromthe American Diabetes Association (Grant 1-15-MI-03) and a postdoctoral fellowship fromthe American Heart Association.
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- 2019
17. Interferon-α Triggers Autoimmune Thyroid Diseases via Lysosomal-Dependent Degradation of Thyroglobulin
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Steven K. Libutti, Larissa C. Faustino, Yaron Tomer, Randall P. Owen, Julio Madrigal-Matute, and Angela Lombardi
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0301 basic medicine ,medicine.medical_specialty ,Endocrinology, Diabetes and Metabolism ,medicine.medical_treatment ,Graves' disease ,Clinical Biochemistry ,Protein degradation ,Antiviral Agents ,Thyroglobulin ,Biochemistry ,Autoimmune Diseases ,03 medical and health sciences ,0302 clinical medicine ,Endocrinology ,Downregulation and upregulation ,Internal medicine ,Autophagy ,medicine ,Humans ,Clinical Research Articles ,Chemistry ,Biochemistry (medical) ,Thyroid ,Interferon-alpha ,Endoplasmic Reticulum Stress ,medicine.disease ,Thyroid Diseases ,030104 developmental biology ,Cytokine ,medicine.anatomical_structure ,030220 oncology & carcinogenesis ,Proteolysis ,Proteasome inhibitor ,Lysosomes ,medicine.drug - Abstract
Context Autoimmune thyroid diseases (AITDs) arise from complex interactions among genetic, epigenetic, and environmental factors. Thyroglobulin (TG) is a major susceptibility gene for both Graves disease and Hashimoto thyroiditis. Interferon-α (IFNα), a cytokine secreted during viral infections, has emerged as a key trigger of AITD. We have shown that IFNα upregulates TG transcription; however, how the upregulation of TG transcription by IFNα triggers AITD is still unknown. Objective To evaluate how IFNα triggers AITD by testing its effects on TG processing. Design We exposed human thyroid cells to IFNα and evaluated its effects on TG expression and processing. Results Human thyroid cells exposed to INFα had increased levels of TG mRNA but reduced TG protein levels, indicating TG protein degradation. IFNα induced endoplasmic reticulum stress, but surprisingly, neither the use of chemical chaperones nor proteasome inhibitor prevented IFNα-induced TG degradation. IFNα also increased LysoTracker staining and autophagy flux measured by net light chain 3 (LC3)-II and p62 fluxes. In addition, expression of autophagy markers LC3 and autophagy-related gene 5 was higher in thyroid tissues from patients with AITD. Finally, blocking lysosomal degradation prevented IFNα-induced degradation of TG. Conclusion We have shown in this study IFNα-induced lysosomal-dependent degradation of TG in human thyroid cells. Our findings suggest that during viral infections, local thyroidal IFNα production can lead to lysosomal TG degradation, releasing pathogenic TG peptides that can trigger AITD.
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- 2018
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18. Autophagy Is Required for Sortilin-Mediated Degradation of Apolipoprotein B100
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Jaume Amengual, Julio Madrigal-Matute, Jeffrey L. Brodsky, Ana Maria Cuervo, Alanna Strong, Liang Guo, Edward A. Fisher, Susmita Kaushik, Haizhen Wang, and Daniel J. Rader
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0301 basic medicine ,Very low-density lipoprotein ,Apolipoprotein B ,Physiology ,Endosome ,Article ,Mice ,03 medical and health sciences ,0302 clinical medicine ,Cell Line, Tumor ,Autophagy ,Animals ,Humans ,Secretion ,Transcription factor ,Cells, Cultured ,Secretory pathway ,Secretory Pathway ,biology ,Chemistry ,Rats ,Cell biology ,Adaptor Proteins, Vesicular Transport ,030104 developmental biology ,Apolipoprotein B-100 ,Proteolysis ,Hepatocytes ,biology.protein ,lipids (amino acids, peptides, and proteins) ,Cardiology and Cardiovascular Medicine ,030217 neurology & neurosurgery ,Lipoprotein - Abstract
Rationale: Genome-wide association studies identified single-nucleotide polymorphisms near the SORT1 locus strongly associated with decreased plasma LDL-C (low-density lipoprotein cholesterol) levels and protection from atherosclerotic cardiovascular disease and myocardial infarction. The minor allele of the causal SORT1 single-nucleotide polymorphism locus creates a putative C/EBPα (CCAAT/enhancer-binding protein α)-binding site in the SORT1 promoter, thereby increasing in homozygotes sortilin expression by 12-fold in liver, which is rich in this transcription factor. Our previous studies in mice have showed reductions in plasma LDL-C and its principal protein component, apoB (apolipoprotein B) with increased SORT1 expression, and in vitro studies suggested that sortilin promoted the presecretory lysosomal degradation of apoB associated with the LDL precursor, VLDL (very-low-density lipoprotein). Objective: To determine directly that SORT1 overexpression results in apoB degradation and to identify the mechanisms by which this reduces apoB and VLDL secretion by the liver, thereby contributing to understanding the clinical phenotype of lower LDL-C levels. Methods and Results: Pulse-chase studies directly established that SORT1 overexpression results in apoB degradation. As noted above, previous work implicated a role for lysosomes in this degradation. Through in vitro and in vivo studies, we now demonstrate that the sortilin-mediated route of apoB to lysosomes is unconventional and intersects with autophagy. Increased expression of sortilin diverts more apoB away from secretion, with both proteins trafficking to the endosomal compartment in vesicles that fuse with autophagosomes to form amphisomes. The amphisomes then merge with lysosomes. Furthermore, we show that sortilin itself is a regulator of autophagy and that its activity is scaled to the level of apoB synthesis. Conclusions: These results strongly suggest that an unconventional lysosomal targeting process dependent on autophagy degrades apoB that was diverted from the secretory pathway by sortilin and provides a mechanism contributing to the reduced LDL-C found in individuals with SORT1 overexpression.
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- 2018
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19. Leducq Network
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Luca Scorrano, Julio Madrigal-Matute, and Junichi Sadoshima
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0301 basic medicine ,Gerontology ,autophagy ,Programmed cell death ,Physiology ,business.industry ,Extramural ,Autophagy ,Medical school ,heart ,Disease ,Article ,mitochondria ,03 medical and health sciences ,lysosomes ,030104 developmental biology ,Basic research ,metabolism ,Mitophagy ,Medicine ,Early career ,Cardiology and Cardiovascular Medicine ,business - Abstract
The Fondation Leducq, created by the French entrepreneur Jean Leducq and his wife Sylviane, supports international collaborative research to combat cardiovascular disease (CVD) and neurovascular disease. Our Network, Modulating Autophagy to Treat Cardiovascular Disease, is one of the 57 funded thus far by the foundation (http://www.leducq-autophagy.org/). The main goal of our Network is to elucidate the roles of autophagy in CVD and discover therapeutic opportunities that autophagy can offer for these syndromes (Figure 1). To this end, we brought together basic research laboratories (Ana Maria Cuervo, Guido Kroemer, Beth Levine, and Luca Scorrano) investigating fundamental mechanisms of autophagy, metabolism, and cellular quality control mechanisms and investigators (Evripidis Gavathiotis, Richard Kitsis, Kinya Otsu, Junichi Sadoshima, and Judith Sluimer) working on the role of autophagy, metabolism, and cell death in CVD. Like all Leducq Transatlantic Networks of Excellence (TNE), we have 2 coordinators: Sadoshima (North American) and Scorrano (European), although The Rutgers New Jersey Medical School serves as the central coordinating office (Figure 2). Figure 1. Aims of the Leducq Network Modulating Autophagy to Treat Cardiovascular Disease. The Network has 4 major goals. (1) To evaluate whether autophagy is protective or damaging. (2) To elucidate bidirectional regulation between metabolism and autophagy (particularly in the form of chaperone-mediated autophagy [CMA]). (3) To elucidate bidirectional regulation between mitophagy and mitochondrial metabolism. (4) To discover how therapeutic modulation of autophagy can be used to treat cardiovascular disease (CVD). Figure 2. Schematic organization of the Network. The Network unites 8 principal investigators (plus Dr Evripidis Gavathiotis’s group) from 4 laboratories each in North America and Europe. Rutgers New Jersey Medical School serves as a central administrative office for fiscal reporting. Each laboratory designated several early career investigators (ECIs). The ECIs form their own Network and actively participate in the activity of the Network. For example, they use the resources …
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- 2018
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20. Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition)
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Daniel J. Klionsky, Kotb Abdelmohsen, Akihisa Abe, Md Joynal Abedin, Hagai Abeliovich, Abraham Acevedo Arozena, Hiroaki Adachi, Christopher M. Adams, Peter D. Adams, Khosrow Adeli, Peter J. Adhihetty, Sharon G. Adler, Galila Agam, Rajesh Agarwal, Manish K. Aghi, Maria Agnello, Patrizia Agostinis, Patricia V. Aguilar, Julio Aguirre Ghiso, Edoardo M. Airoldi, Slimane Ait Si Ali, Takahiko Akematsu, Emmanuel T. Akporiaye, Mohamed Al Rubeai, Guillermo M. Albaiceta, Chris Albanese, Diego Albani, Matthew L. Albert, Jesus Aldudo, Hana Algül, Mehrdad Alirezaei, Iraide Alloza, Alexandru Almasan, Maylin Almonte Beceril, Emad S. Alnemri, Covadonga Alonso, Nihal Altan Bonnet, Dario C. Altieri, Silvia Alvarez, Lydia Alvarez Erviti, Sandro Alves, Giuseppina Amadoro, Atsuo Amano, Consuelo Amantini, Santiago Ambrosio, Ivano Amelio, Amal O. Amer, Mohamed Amessou, Angelika Amon, Zhenyi An, Frank A. Anania, Stig U. Andersen, Usha P. Andley, Catherine K. Andreadi, Nathalie Andrieu Abadie, Alberto Anel, David K. Ann, Shailendra Anoopkumar Dukie, Manuela Antonioli, Hiroshi Aoki, Nadezda Apostolova, Saveria Aquila, Katia Aquilano, Koichi Araki, Eli Arama, Agustin Aranda, Jun Araya, Alexandre Arcaro, Esperanza Arias, Hirokazu Arimoto, Aileen R. Ariosa, Jane L. Armstrong, Thierry Arnould, Ivica Arsov, Katsuhiko Asanuma, Valerie Askanas, Eric Asselin, Ryuichiro Atarashi, Sally S. Atherton, Julie D. Atkin, Laura D. Attardi, Patrick Auberger, Georg Auburger, Laure Aurelian, Riccardo Autelli, Laura Avagliano, Maria Laura Avantaggiati, Limor Avrahami, Suresh Awale, Neelam Azad, Tiziana Bachetti, Jonathan M. Backer, Dong Hun Bae, Jae sung Bae, Ok Nam Bae, Soo Han Bae, Eric H. Baehrecke, Seung Hoon Baek, Stephen Baghdiguian, Agnieszka Bagniewska Zadworna, Hua Bai, Jie Bai, Xue Yuan Bai, Yannick Bailly, Kithiganahalli Narayanaswamy Balaji, Walter Balduini, Andrea Ballabio, Rena Balzan, Rajkumar Banerjee, Gábor Bánhegyi, Haijun Bao, Benoit Barbeau, Maria D. Barrachina, Esther Barreiro, Bonnie Bartel, Alberto Bartolomé, Diane C. Bassham, Maria Teresa Bassi, Robert C. Bast Jr, Alakananda Basu, Maria Teresa Batista, Henri Batoko, Maurizio Battino, Kyle Bauckman, Bradley L. Baumgarner, K. Ulrich Bayer, Rupert Beale, Jean François Beaulieu, George R. Beck Jr, Christoph Becker, J. David Beckham, Pierre André Bédard, Patrick J. Bednarski, Thomas J. Begley, Christian Behl, Christian Behrends, Georg MN Behrens, Kevin E. Behrns, Eloy Bejarano, Amine Belaid, Francesca Belleudi, Giovanni Bénard, Guy Berchem, Daniele Bergamaschi, Matteo Bergami, Ben Berkhout, Laura Berliocchi, Amélie Bernard, Monique Bernard, Francesca Bernassola, Anne Bertolotti, Amanda S. Bess, Sébastien Besteiro, Saverio Bettuzzi, Savita Bhalla, Shalmoli Bhattacharyya, Sujit K. Bhutia, Caroline Biagosch, Michele Wolfe Bianchi, Martine Biard Piechaczyk, Viktor Billes, Claudia Bincoletto, Baris Bingol, Sara W. Bird, Marc Bitoun, Ivana Bjedov, Craig Blackstone, Lionel Blanc, Guillermo A. Blanco, Heidi Kiil Blomhoff, Emilio Boada Romero, Stefan Böckler, Marianne Boes, Kathleen Boesze Battaglia, Lawrence H. Boise, Alessandra Bolino, Andrea Boman, Paolo Bonaldo, Matteo Bordi, Jürgen Bosch, Luis M. Botana, Joelle Botti, German Bou, Marina Bouché, Marion Bouchecareilh, Marie Josée Boucher, Michael E. Boulton, Sebastien G. Bouret, Patricia Boya, Michaël Boyer Guittaut, Peter V. Bozhkov, Nathan Brady, Vania MM Braga, Claudio Brancolini, Gerhard H. Braus, José M. Bravo San Pedro, Lisa A. Brennan, Emery H. Bresnick, Patrick Brest, Dave Bridges, MarieAgnès Bringer, Marisa Brini, Glauber C. Brito, Bertha Brodin, Paul S. Brookes, Eric J. Brown, Karen Brown, Hal E. Broxmeyer, Alain Bruhat, Patricia Chakur Brum, John H. Brumell, Nicola Brunetti Pierri, Robert J. Bryson Richardson, Shilpa Buch, Alastair M. Buchan, Hikmet Budak, Dmitry V. Bulavin, Scott J. Bultman, Geert Bultynck, Vladimir Bumbasirevic, Yan Burelle, Robert E. Burke, Margit Burmeister, Peter Bütikofer, Laura Caberlotto, Ken Cadwell, Monika Cahova, Dongsheng Cai, Jingjing Cai, Qian Cai, Sara Calatayud, Nadine Camougrand, Michelangelo Campanella, Grant R. Campbell, Matthew Campbell, Silvia Campello, Robin Candau, Isabella Caniggia, Lavinia Cantoni, Lizhi Cao, Allan B. Caplan, Michele Caraglia, Claudio Cardinali, Sandra Morais Cardoso, Jennifer S. Carew, Laura A. Carleton, Cathleen R. Carlin, Silvia Carloni, Sven R. Carlsson, Didac Carmona Gutierrez, Leticia AM Carneiro, Oliana Carnevali, Serena Carra, Alice Carrier, Bernadette Carroll, Caty Casas, Josefina Casas, Giuliana Cassinelli, Perrine Castets, Susana Castro Obregon, Gabriella Cavallini, Isabella Ceccherini, Francesco Cecconi, Arthur I. Cederbaum, Valentín Ceña, Simone Cenci, Claudia Cerella, Davide Cervia, CETRULLO, SILVIA, Hassan Chaachouay, Han Jung Chae, Andrei S. Chagin, Chee Yin Chai, Gopal Chakrabarti, Georgios Chamilos, Edmond YW Chan, Matthew TV Chan, Dhyan Chandra, Pallavi Chandra, Chih Peng Chang, Raymond Chuen Chung Chang, Ta Yuan Chang, John C. Chatham, Saurabh Chatterjee, Santosh Chauhan, Yongsheng Che, Michael E. Cheetham, Rajkumar Cheluvappa, Chun Jung Chen, Gang Chen, Guang Chao Chen, Guoqiang Chen, Hongzhuan Chen, Jeff W. Chen, Jian Kang Chen, Min Chen, Mingzhou Chen, Peiwen Chen, Qi Chen, Quan Chen, Shang Der Chen, Si Chen, Steve S. L. Chen, Wei Chen, Wei Jung Chen, Wen Qiang Chen, Wenli Chen, Xiangmei Chen, Yau Hung Chen, Ye Guang Chen, Yin Chen, Yingyu Chen, Yongshun Chen, Yu Jen Chen, Yue Qin Chen, Yujie Chen, Zhen Chen, Zhong Chen, Alan Cheng, Christopher HK Cheng, Hua Cheng, Heesun Cheong, Sara Cherry, Jason Chesney, Chun Hei Antonio Cheung, Eric Chevet, Hsiang Cheng Chi, Sung Gil Chi, Fulvio Chiacchiera, Hui Ling Chiang, Roberto Chiarelli, Mario Chiariello, Marcello Chieppa, Lih Shen Chin, Mario Chiong, Gigi NC Chiu, Dong Hyung Cho, Ssang Goo Cho, William C. Cho, Yong Yeon Cho, Young Seok Cho, Augustine MK Choi, Eui Ju Choi, Eun Kyoung Choi, Jayoung Choi, Mary E. Choi, Seung Il Choi, Tsui Fen Chou, Salem Chouaib, Divaker Choubey, Vinay Choubey, Kuan Chih Chow, Kamal Chowdhury, Charleen T. Chu, Tsung Hsien Chuang, Taehoon Chun, Hyewon Chung, Taijoon Chung, Yuen Li Chung, Yong Joon Chwae, Valentina Cianfanelli, Roberto Ciarcia, Iwona A. Ciechomska, Maria Rosa Ciriolo, Mara Cirone, Sofie Claerhout, Michael J. Clague, Joan Clària, Peter GH Clarke, Robert Clarke, Emilio Clementi, Cédric Cleyrat, Miriam Cnop, Eliana M. Coccia, Tiziana Cocco, Patrice Codogno, Jörn Coers, Ezra EW Cohen, David Colecchia, Luisa Coletto, Núria S. Coll, Emma Colucci Guyon, Sergio Comincini, Maria Condello, Katherine L. Cook, Graham H. Coombs, Cynthia D. Cooper, J. Mark Cooper, Isabelle Coppens, Maria Tiziana Corasaniti, Marco Corazzari, Ramon Corbalan, Elisabeth Corcelle Termeau, Mario D. Cordero, Cristina Corral Ramos, Olga Corti, Andrea Cossarizza, Paola Costelli, Safia Costes, Susan L. Cotman, Ana Coto Montes, Sandra Cottet, Eduardo Couve, Lori R. Covey, L. Ashley Cowart, Jeffery S. Cox, Fraser P. Coxon, Carolyn B. Coyne, Mark S. Cragg, Rolf J. Craven, Tiziana Crepaldi, Jose L. Crespo, Alfredo Criollo, Valeria Crippa, Maria Teresa Cruz, Ana Maria Cuervo, Jose M. Cuezva, Taixing Cui, Pedro R. Cutillas, Mark J. Czaja, Maria F. Czyzyk Krzeska, Ruben K. Dagda, Uta Dahmen, Chunsun Dai, Wenjie Dai, Yun Dai, Kevin N. Dalby, Luisa Dalla Valle, Guillaume Dalmasso, Marcello D'Amelio, Markus Damme, Arlette Darfeuille Michaud, Catherine Dargemont, Victor M. Darley Usmar, Srinivasan Dasarathy, Biplab Dasgupta, Srikanta Dash, Crispin R. Dass, Hazel Marie Davey, Lester M. Davids, David Dávila, Roger J. Davis, Ted M. Dawson, Valina L. Dawson, Paula Daza, Jackie de Belleroche, Paul de Figueiredo, Regina Celia Bressan Queiroz de Figueiredo, José de la Fuente, Luisa De Martino, Antonella De Matteis, Guido RY De Meyer, Angelo De Milito, Mauro De Santi, Wanderley de Souza, Vincenzo De Tata, Daniela De Zio, Jayanta Debnath, Reinhard Dechant, Jean Paul Decuypere, Shane Deegan, Benjamin Dehay, Barbara Del Bello, Dominic P. Del Re, Régis Delage Mourroux, Lea MD Delbridge, Louise Deldicque, Elizabeth Delorme Axford, Yizhen Deng, Joern Dengjel, Melanie Denizot, Paul Dent, Channing J. Der, Vojo Deretic, Benoît Derrien, Eric Deutsch, Timothy P. Devarenne, Rodney J. Devenish, Sabrina Di Bartolomeo, Nicola Di Daniele, Fabio Di Domenico, Alessia Di Nardo, Simone Di Paola, Antonio Di Pietro, Livia Di Renzo, Aaron DiAntonio, Guillermo Díaz Araya, Ines Díaz Laviada, Maria T. Diaz Meco, Javier Diaz Nido, Chad A. Dickey, Robert C. Dickson, Marc Diederich, Paul Digard, Ivan Dikic, Savithrama P. Dinesh Kumar, Chan Ding, Wen Xing Ding, Zufeng Ding, Luciana Dini, Jörg HW Distler, Abhinav Diwan, Mojgan Djavaheri Mergny, Kostyantyn Dmytruk, Renwick CJ Dobson, Volker Doetsch, Karol Dokladny, Svetlana Dokudovskaya, Massimo Donadelli, X. Charlie Dong, Xiaonan Dong, Zheng Dong, Terrence M. Donohue Jr, Kelly S. Doran, Gabriella D'Orazi, Gerald W. Dorn II, Victor Dosenko, Sami Dridi, Liat Drucker, Jie Du, Li Lin Du, Lihuan Du, André du Toit, Priyamvada Dua, Lei Duan, Pu Duann, Vikash Kumar Dubey, Michael R. Duchen, Michel A. Duchosal, Helene Duez, Isabelle Dugail, Verónica I. Dumit, Mara C. Duncan, Elaine A. Dunlop, William A. Dunn Jr, Nicolas Dupont, Luc Dupuis, Raúl V. Durán, Thomas M. Durcan, Stéphane Duvezin Caubet, Umamaheswar Duvvuri, Vinay Eapen, Darius Ebrahimi Fakhari, Arnaud Echard, Leopold Eckhart, Charles L. Edelstein, Aimee L. Edinger, Ludwig Eichinger, Tobias Eisenberg, Avital Eisenberg Lerner, N. Tony Eissa, Wafik S. El Deiry, Victoria El Khoury, Zvulun Elazar, Hagit Eldar Finkelman, Chris JH Elliott, Enzo Emanuele, Urban Emmenegger, Nikolai Engedal, Anna Mart Engelbrecht, Simone Engelender, Jorrit M. Enserink, Ralf Erdmann, Jekaterina Erenpreisa, Rajaraman Eri, Jason L. Eriksen, Andreja Erman, Ricardo Escalante, Eeva Liisa Eskelinen, Lucile Espert, Lorena Esteban Martínez, Thomas J. Evans, Mario Fabri, Gemma Fabrias, Cinzia Fabrizi, Antonio Facchiano, Nils J. Færgeman, Alberto Faggioni, W. Douglas Fairlie, Chunhai Fan, Daping Fan, Jie Fan, Shengyun Fang, Manolis Fanto, Alessandro Fanzani, Thomas Farkas, Mathias Faure, Francois B. Favier, Howard Fearnhead, Massimo Federici, Erkang Fei, Tania C. Felizardo, Hua Feng, Yibin Feng, Yuchen Feng, Thomas A. Ferguson, Álvaro F. Fernández, Maite G. Fernandez Barrena, Jose C. Fernandez Checa, Arsenio Fernández López, Martin E. Fernandez Zapico, Olivier Feron, Elisabetta Ferraro, Carmen Veríssima Ferreira Halder, Laszlo Fesus, Ralph Feuer, Fabienne C. Fiesel, Eduardo C. Filippi Chiela, Giuseppe Filomeni, Gian Maria Fimia, John H. Fingert, Steven Finkbeiner, Toren Finkel, Filomena Fiorito, Paul B. Fisher, Marc Flajolet, FLAMIGNI, FLAVIO, Oliver Florey, Salvatore Florio, R. Andres Floto, Marco Folini, Carlo Follo, Edward A. Fon, Francesco Fornai, Franco Fortunato, Alessandro Fraldi, Rodrigo Franco, Arnaud Francois, Aurélie François, Lisa B. Frankel, Iain DC Fraser, Norbert Frey, Damien G. Freyssenet, Christian Frezza, Scott L. Friedman, Daniel E. Frigo, Dongxu Fu, José M. Fuentes, Juan Fueyo, Yoshio Fujitani, Yuuki Fujiwara, Mikihiro Fujiya, Mitsunori Fukuda, Simone Fulda, Carmela Fusco, Bozena Gabryel, Matthias Gaestel, Philippe Gailly, Malgorzata Gajewska, Sehamuddin Galadari, Gad Galili, Inmaculada Galindo, Maria F. Galindo, Giovanna Galliciotti, Lorenzo Galluzzi, Luca Galluzzi, Vincent Galy, Noor Gammoh, Sam Gandy, Anand K. Ganesan, Swamynathan Ganesan, Ian G. Ganley, Monique Gannagé, Fen Biao Gao, Feng Gao, Jian Xin Gao, Lorena García Nannig, Eleonora García Véscovi, Marina Garcia Macía, Carmen Garcia Ruiz, Abhishek D. Garg, Pramod Kumar Garg, Ricardo Gargini, Nils Christian Gassen, Damián Gatica, Evelina Gatti, Julie Gavard, Evripidis Gavathiotis, Liang Ge, Pengfei Ge, Shengfang Ge, Po Wu Gean, Vania Gelmetti, Armando A. Genazzani, Jiefei Geng, Pascal Genschik, Lisa Gerner, Jason E. Gestwicki, David A. Gewirtz, Saeid Ghavami, Eric Ghigo, Debabrata Ghosh, Anna Maria Giammarioli, Francesca Giampieri, Claudia Giampietri, Alexandra Giatromanolaki, Derrick J. Gibbings, Lara Gibellini, Spencer B. Gibson, Vanessa Ginet, Antonio Giordano, Flaviano Giorgini, Elisa Giovannetti, Stephen E. Girardin, Suzana Gispert, Sandy Giuliano, Candece L. Gladson, Alvaro Glavic, Martin Gleave, Nelly Godefroy, Robert M. Gogal Jr, Kuppan Gokulan, Gustavo H. Goldman, Delia Goletti, Michael S. Goligorsky, Aldrin V. Gomes, Ligia C. Gomes, Hernando Gomez, Candelaria Gomez Manzano, Rubén Gómez Sánchez, Dawit AP Gonçalves, Ebru Goncu, Qingqiu Gong, Céline Gongora, Carlos B. Gonzalez, Pedro Gonzalez Alegre, Pilar Gonzalez Cabo, Rosa Ana González Polo, Ing Swie Goping, Carlos Gorbea, Nikolai V. Gorbunov, Daphne R. Goring, Adrienne M. Gorman, Sharon M. Gorski, Sandro Goruppi, Shino Goto Yamada, Cecilia Gotor, Roberta A. Gottlieb, Illana Gozes, Devrim Gozuacik, Yacine Graba, Martin Graef, Giovanna E. Granato, Gary Dean Grant, Steven Grant, Giovanni Luca Gravina, Douglas R. Green, Alexander Greenhough, Michael T. Greenwood, Benedetto Grimaldi, Frédéric Gros, Charles Grose, Jean Francois Groulx, Florian Gruber, Paolo Grumati, Tilman Grune, Jun Lin Guan, Kun Liang Guan, Barbara Guerra, Carlos Guillen, Kailash Gulshan, Jan Gunst, Chuanyong Guo, Lei Guo, Ming Guo, Wenjie Guo, Xu Guang Guo, Andrea A. Gust, Åsa B. Gustafsson, Elaine Gutierrez, Maximiliano G. Gutierrez, Ho Shin Gwak, Albert Haas, James E. Haber, Shinji Hadano, Monica Hagedorn, David R. Hahn, Andrew J. Halayko, Anne Hamacher Brady, Kozo Hamada, Ahmed Hamai, Andrea Hamann, Maho Hamasaki, Isabelle Hamer, Qutayba Hamid, Ester M. Hammond, Feng Han, Weidong Han, James T. Handa, John A. Hanover, Malene Hansen, Masaru Harada, Ljubica Harhaji Trajkovic, J. Wade Harper, Abdel Halim Harrath, Adrian L. Harris, James Harris, Udo Hasler, Peter Hasselblatt, Kazuhisa Hasui, Robert G. Hawley, Teresa S. Hawley, Congcong He, Cynthia Y. He, Fengtian He, Gu He, Rong Rong He, Xian Hui He, You Wen He, Yu Ying He, Joan K. Heath, Marie Josée Hébert, Robert A. Heinzen, Gudmundur Vignir Helgason, Michael Hensel, Elizabeth P. Henske, Chengtao Her, Paul K. Herman, Agustín Hernández, Carlos Hernandez, Sonia Hernández Tiedra, Claudio Hetz, P. Robin Hiesinger, Katsumi Higaki, Sabine Hilfiker, Bradford G. Hill, Joseph A. Hill, William D. Hill, Keisuke Hino, Daniel Hofius, Paul Hofman, Günter U. Höglinger, Jörg Höhfeld, Marina K. Holz, Yonggeun Hong, David A. Hood, Jeroen JM Hoozemans, Thorsten Hoppe, Chin Hsu, Chin Yuan Hsu, Li Chung Hsu, Dong Hu, Guochang Hu, Hong Ming Hu, Hongbo Hu, Ming Chang Hu, Yu Chen Hu, Zhuo Wei Hu, Fang Hua, Ya Hua, Canhua Huang, Huey Lan Huang, Kuo How Huang, Kuo Yang Huang, Shile Huang, Shiqian Huang, Wei Pang Huang, Yi Ran Huang, Yong Huang, Yunfei Huang, Tobias B. Huber, Patricia Huebbe, Won Ki Huh, Juha J. Hulmi, Gang Min Hur, James H. Hurley, Zvenyslava Husak, Sabah NA Hussain, Salik Hussain, Jung Jin Hwang, Seungmin Hwang, Thomas IS Hwang, Atsuhiro Ichihara, Yuzuru Imai, Carol Imbriano, Megumi Inomata, Takeshi Into, Valentina Iovane, Juan L. Iovanna, Renato V. Iozzo, Nancy Y. Ip, Javier E. Irazoqui, Pablo Iribarren, Yoshitaka Isaka, Aleksandra J. Isakovic, Harry Ischiropoulos, Jeffrey S. Isenberg, Mohammad Ishaq, Hiroyuki Ishida, Isao Ishii, Jane E. Ishmael, Ciro Isidoro, Ken ichi Isobe, Erika Isono, Shohreh Issazadeh Navikas, Koji Itahana, Eisuke Itakura, Andrei I. Ivanov, Anand Krishnan V. Iyer, José M. Izquierdo, Yotaro Izumi, Valentina Izzo, Marja Jäättelä, Nadia Jaber, Daniel John Jackson, William T. Jackson, Tony George Jacob, Thomas S. Jacques, Chinnaswamy Jagannath, Ashish Jain, Nihar Ranjan Jana, Byoung Kuk Jang, Alkesh Jani, Bassam Janji, Paulo Roberto Jannig, Patric J. Jansson, Steve Jean, Marina Jendrach, Ju Hong Jeon, Niels Jessen, Eui Bae Jeung, Kailiang Jia, Lijun Jia, Hong Jiang, Hongchi Jiang, Liwen Jiang, Teng Jiang, Xiaoyan Jiang, Xuejun Jiang, Ying Jiang, Yongjun Jiang, Alberto Jiménez, Cheng Jin, Hongchuan Jin, Lei Jin, Meiyan Jin, Shengkan Jin, Umesh Kumar Jinwal, Eun Kyeong Jo, Terje Johansen, Daniel E. Johnson, Gail VW Johnson, James D. Johnson, Eric Jonasch, Chris Jones, Leo AB Joosten, Joaquin Jordan, Anna Maria Joseph, Bertrand Joseph, Annie M. Joubert, Dianwen Ju, Jingfang Ju, Hsueh Fen Juan, Katrin Juenemann, Gábor Juhász, Hye Seung Jung, Jae U. Jung, Yong Keun Jung, Heinz Jungbluth, Matthew J. Justice, Barry Jutten, Nadeem O. Kaakoush, Kai Kaarniranta, Allen Kaasik, Tomohiro Kabuta, Bertrand Kaeffer, Katarina Kågedal, Alon Kahana, Shingo Kajimura, Or Kakhlon, Manjula Kalia, Dhan V. Kalvakolanu, Yoshiaki Kamada, Konstantinos Kambas, Vitaliy O. Kaminskyy, Harm H. Kampinga, Mustapha Kandouz, Chanhee Kang, Rui Kang, Tae Cheon Kang, Tomotake Kanki, Thirumala Devi Kanneganti, Haruo Kanno, Anumantha G. Kanthasamy, Marc Kantorow, Maria Kaparakis Liaskos, Orsolya Kapuy, Vassiliki Karantza, Md Razaul Karim, Parimal Karmakar, Arthur Kaser, Susmita Kaushik, Thomas Kawula, A. Murat Kaynar, Po Yuan Ke, Zun Ji Ke, John H. Kehrl, Kate E. Keller, Jongsook Kim Kemper, Anne K. Kenworthy, Oliver Kepp, Andreas Kern, Santosh Kesari, David Kessel, Robin Ketteler, Isis do Carmo Kettelhut, Bilon Khambu, Muzamil Majid Khan, Vinoth KM Khandelwal, Sangeeta Khare, Juliann G. Kiang, Amy A. Kiger, Akio Kihara, Arianna L. Kim, Cheol Hyeon Kim, Deok Ryong Kim, Do Hyung Kim, Eung Kweon Kim, Hye Young Kim, Hyung Ryong Kim, Jae Sung Kim, Jeong Hun Kim, Jin Cheon Kim, Jin Hyoung Kim, Kwang Woon Kim, Michael D. Kim, Moon Moo Kim, Peter K. Kim, Seong Who Kim, Soo Youl Kim, Yong Sun Kim, Yonghyun Kim, Adi Kimchi, Alec C. Kimmelman, Tomonori Kimura, Jason S. King, Karla Kirkegaard, Vladimir Kirkin, Lorrie A. Kirshenbaum, Shuji Kishi, Yasuo Kitajima, Katsuhiko Kitamoto, Yasushi Kitaoka, Kaio Kitazato, Rudolf A. Kley, Walter T. Klimecki, Michael Klinkenberg, Jochen Klucken, Helene Knævelsrud, Erwin Knecht, Laura Knuppertz, Jiunn Liang Ko, Satoru Kobayashi, Jan C. Koch, Christelle Koechlin Ramonatxo, Ulrich Koenig, Young Ho Koh, Katja Köhler, Sepp D. Kohlwein, Masato Koike, Masaaki Komatsu, Eiki Kominami, Dexin Kong, Hee Jeong Kong, Eumorphia G. Konstantakou, Benjamin T. Kopp, Tamas Korcsmaros, Laura Korhonen, Viktor I. Korolchuk, Nadya V. Koshkina, Yanjun Kou, Michael I. Koukourakis, Constantinos Koumenis, Attila L. Kovács, Tibor Kovács, Werner J. Kovacs, Daisuke Koya, Claudine Kraft, Dimitri Krainc, Helmut Kramer, Tamara Kravic Stevovic, Wilhelm Krek, Carole Kretz Remy, Roswitha Krick, Malathi Krishnamurthy, Janos Kriston Vizi, Guido Kroemer, Michael C. Kruer, Rejko Kruger, Nicholas T. Ktistakis, Kazuyuki Kuchitsu, Christian Kuhn, Addanki Pratap Kumar, Anuj Kumar, Ashok Kumar, Deepak Kumar, Dhiraj Kumar, Rakesh Kumar, Sharad Kumar, Mondira Kundu, Hsing Jien Kung, Atsushi Kuno, Sheng Han Kuo, Jeff Kuret, Tino Kurz, Terry Kwok, Taeg Kyu Kwon, Yong Tae Kwon, Irene Kyrmizi, Albert R. La Spada, Frank Lafont, Tim Lahm, Aparna Lakkaraju, Truong Lam, Trond Lamark, Steve Lancel, Terry H. Landowski, Darius JR Lane, Jon D. Lane, Cinzia Lanzi, Pierre Lapaquette, Louis R. Lapierre, Jocelyn Laporte, Johanna Laukkarinen, Gordon W. Laurie, Sergio Lavandero, Lena Lavie, Matthew J. LaVoie, Betty Yuen Kwan Law, Helen Ka wai Law, Kelsey B. Law, Robert Layfield, Pedro A. Lazo, Laurent Le Cam, Karine G. Le Roch, Hervé Le Stunff, Vijittra Leardkamolkarn, Marc Lecuit, Byung Hoon Lee, Che Hsin Lee, Erinna F. Lee, Gyun Min Lee, He Jin Lee, Hsinyu Lee, Jae Keun Lee, Jongdae Lee, Juhyun Lee, Jun Hee Lee, Michael Lee, Myung Shik Lee, Patty J. Lee, Sam W. Lee, Seung Jae Lee, Shiow Ju Lee, Stella Y. Lee, Sug Hyung Lee, Sung Sik Lee, Sung Joon Lee, Sunhee Lee, Ying Ray Lee, Yong J. Lee, Young H. Lee, Christiaan Leeuwenburgh, Sylvain Lefort, Renaud Legouis, Jinzhi Lei, Qun Ying Lei, David A. Leib, Gil Leibowitz, Istvan Lekli, Stéphane D. Lemaire, John J. Lemasters, Marius K. Lemberg, Antoinette Lemoine, Shuilong Leng, Guido Lenz, Paola Lenzi, Lilach O. Lerman, Daniele Lettieri Barbato, Julia I. Ju Leu, Hing Y. Leung, Beth Levine, Patrick A. Lewis, Frank Lezoualc'h, Chi Li, Faqiang Li, Feng Jun Li, Jun Li, Ke Li, Lian Li, Min Li, Qiang Li, Rui Li, Sheng Li, Wei Li, Xiaotao Li, Yumin Li, Jiqin Lian, Chengyu Liang, Qiangrong Liang, Yulin Liao, Joana Liberal, Pawel P. Liberski, Pearl Lie, Andrew P. Lieberman, Hyunjung Jade Lim, Kah Leong Lim, Kyu Lim, Raquel T. Lima, Chang Shen Lin, Chiou Feng Lin, Fang Lin, Fangming Lin, Fu Cheng Lin, Kui Lin, Kwang Huei Lin, Pei Hui Lin, Tianwei Lin, Wan Wan Lin, Yee Shin Lin, Yong Lin, Rafael Linden, Dan Lindholm, Lisa M. Lindqvist, Paul Lingor, Andreas Linkermann, Lance A. Liotta, Marta M. Lipinski, Vitor A. Lira, Michael P. Lisanti, Paloma B. Liton, Bo Liu, Chong Liu, Chun Feng Liu, Fei Liu, Hung Jen Liu, Jianxun Liu, Jing Jing Liu, Jing Lan Liu, Ke Liu, Leyuan Liu, Liang Liu, Quentin Liu, Rong Yu Liu, Shiming Liu, Shuwen Liu, Wei Liu, Xian De Liu, Xiangguo Liu, Xiao Hong Liu, Xinfeng Liu, Xu Liu, Xueqin Liu, Yang Liu, Yule Liu, Zexian Liu, Zhe Liu, Juan P. Liuzzi, Gérard Lizard, Mila Ljujic, Irfan J. Lodhi, Susan E. Logue, Bal L. Lokeshwar, Yun Chau Long, Sagar Lonial, Benjamin Loos, Carlos López Otín, Cristina López Vicario, Mar Lorente, Philip L. Lorenzi, Péter Lõrincz, Marek Los, Michael T. Lotze, Penny E. Lovat, Binfeng Lu, Bo Lu, Jiahong Lu, Qing Lu, She Min Lu, Shuyan Lu, Yingying Lu, Frédéric Luciano, Shirley Luckhart, John Milton Lucocq, Paula Ludovico, Aurelia Lugea, Nicholas W. Lukacs, Julian J. Lum, Anders H. Lund, Honglin Luo, Jia Luo, Shouqing Luo, Claudio Luparello, Timothy Lyons, Jianjie Ma, Yi Ma, Yong Ma, Zhenyi Ma, Juliano Machado, Glaucia M. Machado Santelli, Fernando Macian, Gustavo C. MacIntosh, Jeffrey P. MacKeigan, Kay F. Macleod, John D. MacMicking, Lee Ann MacMillan Crow, Frank Madeo, Muniswamy Madesh, Julio Madrigal Matute, Akiko Maeda, Tatsuya Maeda, Gustavo Maegawa, Emilia Maellaro, Hannelore Maes, Marta Magariños, Kenneth Maiese, Tapas K. Maiti, Luigi Maiuri, Maria Chiara Maiuri, Carl G. Maki, Roland Malli, Walter Malorni, Alina Maloyan, Fathia Mami Chouaib, Na Man, Joseph D. Mancias, Eva Maria Mandelkow, Michael A. Mandell, Angelo A. Manfredi, Serge N. Manié, Claudia Manzoni, Kai Mao, Zixu Mao, Zong Wan Mao, Philippe Marambaud, Anna Maria Marconi, Zvonimir Marelja, Gabriella Marfe, Marta Margeta, Eva Margittai, Muriel Mari, Francesca V. Mariani, Concepcio Marin, Sara Marinelli, Guillermo Mariño, Ivanka Markovic, Rebecca Marquez, MARTELLI, ALBERTO MARIA, Sascha Martens, Katie R. Martin, Seamus J. Martin, Shaun Martin, Miguel A. Martin Acebes, Paloma Martín Sanz, Camille Martinand Mari, Wim Martinet, Jennifer Martinez, Nuria Martinez Lopez, Ubaldo Martinez Outschoorn, Moisés Martínez Velázquez, Marta Martinez Vicente, Waleska Kerllen Martins, Hirosato Mashima, James A. Mastrianni, Giuseppe Matarese, Paola Matarrese, Roberto Mateo, Satoaki Matoba, Naomichi Matsumoto, Takehiko Matsushita, Akira Matsuura, Takeshi Matsuzawa, Mark P. Mattson, Soledad Matus, Norma Maugeri, Caroline Mauvezin, Andreas Mayer, Dusica Maysinger, Guillermo D. Mazzolini, Mary Kate McBrayer, Kimberly McCall, Craig McCormick, Gerald M. McInerney, Skye C. McIver, Sharon McKenna, John J. McMahon, Iain A. McNeish, Fatima Mechta Grigoriou, Jan Paul Medema, Diego L. Medina, Klara Megyeri, Maryam Mehrpour, Jawahar L. Mehta, Yide Mei, Ute Christiane Meier, Alfred J. Meijer, Alicia Meléndez, Gerry Melino, Sonia Melino, Edesio Jose Tenorio de Melo, Maria A. Mena, Marc D. Meneghini, Javier A. Menendez, Regina Menezes, Liesu Meng, Ling hua Meng, Songshu Meng, Rossella Menghini, A. Sue Menko, Rubem FS Menna Barreto, Manoj B. Menon, Marco A. Meraz Ríos, Giuseppe Merla, Luciano Merlini, Angelica M. Merlot, Andreas Meryk, Stefania Meschini, Joel N. Meyer, Man tian Mi, Chao Yu Miao, Lucia Micale, Simon Michaeli, Carine Michiels, FRANCO MIGLIACCIO, ANNA RITA, Anastasia Susie Mihailidou, Dalibor Mijaljica, Katsuhiko Mikoshiba, Enrico Milan, Leonor Miller Fleming, Gordon B. Mills, Ian G. Mills, Georgia Minakaki, Berge A. Minassian, Xiu Fen Ming, Farida Minibayeva, Elena A. Minina, Justine D. Mintern, Saverio Minucci, Antonio Miranda Vizuete, Claire H. Mitchell, Shigeki Miyamoto, Keisuke Miyazawa, Noboru Mizushima, Katarzyna Mnich, Baharia Mograbi, Simin Mohseni, Luis Ferreira Moita, Marco Molinari, Maurizio Molinari, Andreas Buch Møller, Bertrand Mollereau, Faustino Mollinedo, Marco Mongillo, Martha M. Monick, Serena Montagnaro, Craig Montell, Darren J. Moore, Michael N. Moore, Rodrigo Mora Rodriguez, Paula I. Moreira, Etienne Morel, Maria Beatrice Morelli, Sandra Moreno, Michael J. Morgan, Arnaud Moris, Yuji Moriyasu, Janna L. Morrison, Lynda A. Morrison, Eugenia Morselli, Jorge Moscat, Pope L. Moseley, Serge Mostowy, Elisa Motori, Denis Mottet, Jeremy C. Mottram, Charbel E. H. Moussa, Vassiliki E. Mpakou, Hasan Mukhtar, Jean M. Mulcahy Levy, Sylviane Muller, Raquel Muñoz Moreno, Cristina Muñoz Pinedo, Christian Münz, Maureen E. Murphy, James T. Murray, Aditya Murthy, Indira U. Mysorekar, Ivan R. Nabi, Massimo Nabissi, Gustavo A. Nader, Yukitoshi Nagahara, Yoshitaka Nagai, Kazuhiro Nagata, Anika Nagelkerke, Péter Nagy, Samisubbu R. Naidu, Sreejayan Nair, Hiroyasu Nakano, Hitoshi Nakatogawa, Meera Nanjundan, Gennaro Napolitano, Naweed I. Naqvi, Roberta Nardacci, Derek P. Narendra, Masashi Narita, Anna Chiara Nascimbeni, Ramesh Natarajan, Luiz C. Navegantes, Steffan T. Nawrocki, Taras Y. Nazarko, Volodymyr Y. Nazarko, Thomas Neill, Luca M. Neri, Mihai G. Netea, Romana T. Netea Maier, Bruno M. Neves, Paul A. Ney, Ioannis P. Nezis, Hang TT Nguyen, Huu Phuc Nguyen, Anne Sophie Nicot, Hilde Nilsen, Per Nilsson, Mikio Nishimura, Ichizo Nishino, Mireia Niso Santano, Hua Niu, Ralph A. Nixon, Vincent CO Njar, Takeshi Noda, Angelika A. Noegel, Elsie Magdalena Nolte, Erik Norberg, Koenraad K. Norga, Sakineh Kazemi Noureini, Shoji Notomi, Lucia Notterpek, Karin Nowikovsky, Nobuyuki Nukina, Thorsten Nürnberger, Valerie B. O'Donnell, Tracey O'Donovan, Peter J. O'Dwyer, Ina Oehme, Clara L. Oeste, Michinaga Ogawa, Besim Ogretmen, Yuji Ogura, Young J. Oh, Masaki Ohmuraya, Takayuki Ohshima, Rani Ojha, Koji Okamoto, Toshiro Okazaki, F. Javier Oliver, Karin Ollinger, Stefan Olsson, Daniel P. Orban, Paulina Ordonez, Idil Orhon, Laszlo Orosz, Eyleen J. O'Rourke, Helena Orozco, Angel L. Ortega, Elena Ortona, Laura D. Osellame, Junko Oshima, Shigeru Oshima, Heinz D. Osiewacz, Takanobu Otomo, Kinya Otsu, Jing hsiung James Ou, Tiago F. Outeiro, Dong yun Ouyang, Hongjiao Ouyang, Michael Overholtzer, Michelle A. Ozbun, P. Hande Ozdinler, Bulent Ozpolat, Consiglia Pacelli, Paolo Paganetti, Guylène Page, Gilles Pages, Ugo Pagnini, Beata Pajak, Stephen C. Pak, Karolina Pakos Zebrucka, Nazzy Pakpour, Zdena Palková, Francesca Palladino, Kathrin Pallauf, Nicolas Pallet, Marta Palmieri, Søren R. Paludan, Camilla Palumbo, Silvia Palumbo, Olatz Pampliega, Hongming Pan, Wei Pan, Theocharis Panaretakis, Aseem Pandey, Areti Pantazopoulou, Zuzana Papackova, Daniela L. Papademetrio, Issidora Papassideri, Alessio Papini, Nirmala Parajuli, Julian Pardo, Vrajesh V. Parekh, Giancarlo Parenti, Jong In Park, Junsoo Park, Ohkmae K. Park, Roy Parker, Rosanna Parlato, Jan B. Parys, Katherine R. Parzych, Jean Max Pasquet, Benoit Pasquier, Kishore BS Pasumarthi, Daniel Patschan, Cam Patterson, Sophie Pattingre, Scott Pattison, Arnim Pause, Hermann Pavenstädt, Flaminia Pavone, Zully Pedrozo, Fernando J. Peña, Miguel A. Peñalva, Mario Pende, Jianxin Peng, Fabio Penna, Josef M. Penninger, Anna Pensalfini, Salvatore Pepe, Gustavo JS Pereira, Paulo C. Pereira, Verónica Pérez de la Cruz, María Esther Pérez Pérez, Diego Pérez Rodríguez, Dolores Pérez Sala, Celine Perier, Andras Perl, David H. Perlmutter, Ida Perrotta, Shazib Pervaiz, Maija Pesonen, Jeffrey E. Pessin, Godefridus J. Peters, Morten Petersen, Irina Petrache, Basil J. Petrof, Goran Petrovski, James M. Phang, Mauro Piacentini, Marina Pierdominici, Philippe Pierre, Valérie Pierrefite Carle, Federico Pietrocola, Felipe X. Pimentel Muiños, Mario Pinar, Benjamin Pineda, Ronit Pinkas Kramarski, Marcello Pinti, Paolo Pinton, Bilal Piperdi, James M. Piret, Leonidas C. Platanias, Harald W. Platta, Edward D. Plowey, Stefanie Pöggeler, Marc Poirot, Peter Polčic, Angelo Poletti, Audrey H. Poon, Hana Popelka, Blagovesta Popova, Izabela Poprawa, Shibu M. Poulose, Joanna Poulton, Scott K. Powers, Ted Powers, Mercedes Pozuelo Rubio, Krisna Prak, Reinhild Prange, Mark Prescott, Muriel Priault, Sharon Prince, Richard L. Proia, Tassula Proikas Cezanne, Holger Prokisch, Vasilis J. Promponas, Karin Przyklenk, Rosa Puertollano, Subbiah Pugazhenthi, Luigi Puglielli, Aurora Pujol, Julien Puyal, Dohun Pyeon, Xin Qi, Wen bin Qian, Zheng Hong Qin, Yu Qiu, Ziwei Qu, Joe Quadrilatero, Frederick Quinn, Nina Raben, Hannah Rabinowich, Flavia Radogna, Michael J. Ragusa, Mohamed Rahmani, Komal Raina, Sasanka Ramanadham, Rajagopal Ramesh, Abdelhaq Rami, Sarron Randall Demllo, Felix Randow, Hai Rao, V. Ashutosh Rao, Blake B. Rasmussen, Tobias M. Rasse, Edward A. Ratovitski, Pierre Emmanuel Rautou, Swapan K. Ray, Babak Razani, Bruce H. Reed, Fulvio Reggiori, Markus Rehm, Andreas S. Reichert, Theo Rein, David J. Reiner, Eric Reits, Jun Ren, Xingcong Ren, Maurizio Renna, Jane EB Reusch, Jose L. Revuelta, Leticia Reyes, Alireza R. Rezaie, Robert I. Richards, Des R. Richardson, Clémence Richetta, Michael A. Riehle, Bertrand H. Rihn, Yasuko Rikihisa, Brigit E. Riley, Gerald Rimbach, Maria Rita Rippo, Konstantinos Ritis, Federica Rizzi, Elizete Rizzo, Peter J. Roach, Jeffrey Robbins, Michel Roberge, Gabriela Roca, Maria Carmela Roccheri, Sonia Rocha, Cecilia MP Rodrigues, Clara I. Rodríguez, Santiago Rodriguez de Cordoba, Natalia Rodriguez Muela, Jeroen Roelofs, Vladimir V. Rogov, Troy T. Rohn, Bärbel Rohrer, Davide Romanelli, Luigina Romani, Patricia Silvia Romano, M. Isabel G. Roncero, Jose Luis Rosa, Alicia Rosello, Kirill V. Rosen, Philip Rosenstiel, Magdalena Rost Roszkowska, Kevin A. Roth, Gael Roué, Mustapha Rouis, Kasper M. Rouschop, Daniel T. Ruan, Diego Ruano, David C. Rubinsztein, Edmund B. Rucker III, Assaf Rudich, Emil Rudolf, Ruediger Rudolf, Markus A. Ruegg, Carmen Ruiz Roldan, Avnika Ashok Ruparelia, Paola Rusmini, David W. Russ, Gian Luigi Russo, Giuseppe Russo, Rossella Russo, Tor Erik Rusten, Victoria Ryabovol, Kevin M. Ryan, Stefan W. Ryter, David M. Sabatini, Michael Sacher, Carsten Sachse, Michael N. Sack, Junichi Sadoshima, Paul Saftig, Ronit Sagi Eisenberg, Sumit Sahni, Pothana Saikumar, Tsunenori Saito, Tatsuya Saitoh, Koichi Sakakura, Machiko Sakoh Nakatogawa, Yasuhito Sakuraba, María Salazar Roa, Paolo Salomoni, Ashok K. Saluja, Paul M. Salvaterra, Rosa Salvioli, Afshin Samali, Anthony MJ Sanchez, José A. Sánchez Alcázar, Ricardo Sanchez Prieto, Marco Sandri, Miguel A. Sanjuan, Stefano Santaguida, Laura Santambrogio, Giorgio Santoni, Claudia Nunes dos Santos, Shweta Saran, Marco Sardiello, Graeme Sargent, Pallabi Sarkar, Sovan Sarkar, Maria Rosa Sarrias, Minnie M. Sarwal, Chihiro Sasakawa, Motoko Sasaki, Miklos Sass, Ken Sato, Miyuki Sato, Joseph Satriano, Niramol Savaraj, Svetlana Saveljeva, Liliana Schaefer, Ulrich E. Schaible, Michael Scharl, Hermann M. Schatzl, Randy Schekman, Wiep Scheper, Alfonso Schiavi, Hyman M. Schipper, Hana Schmeisser, Jens Schmidt, Ingo Schmitz, Bianca E. Schneider, E. Marion Schneider, Jaime L. Schneider, Eric A. Schon, Miriam J. Schönenberger, Axel H. Schönthal, Daniel F. Schorderet, Bernd Schröder, Sebastian Schuck, Ryan J. Schulze, Melanie Schwarten, Thomas L. Schwarz, Sebastiano Sciarretta, Kathleen Scotto, A. Ivana Scovassi, Robert A. Screaton, Mark Screen, Hugo Seca, Simon Sedej, Laura Segatori, Nava Segev, Per O. Seglen, Jose M. Seguí Simarro, Juan Segura Aguilar, Ekihiro Seki, Iban Seiliez, Christian Sell, Clay F. Semenkovich, Gregg L. Semenza, Utpal Sen, Andreas L. Serra, Ana Serrano Puebla, Hiromi Sesaki, Takao Setoguchi, Carmine Settembre, John J. Shacka, Ayesha N. Shajahan Haq, Irving M. Shapiro, Shweta Sharma, Hua She, C. K. James Shen, Chiung Chyi Shen, Han Ming Shen, Sanbing Shen, Weili Shen, Rui Sheng, Xianyong Sheng, Zu Hang Sheng, Trevor G. Shepherd, Junyan Shi, Qiang Shi, Qinghua Shi, Yuguang Shi, Shusaku Shibutani, Kenichi Shibuya, Yoshihiro Shidoji, Jeng Jer Shieh, Chwen Ming Shih, Yohta Shimada, Shigeomi Shimizu, Dong Wook Shin, Mari L. Shinohara, Michiko Shintani, Takahiro Shintani, Tetsuo Shioi, Ken Shirabe, Ronit Shiri Sverdlov, Orian Shirihai, Gordon C. Shore, Chih Wen Shu, Deepak Shukla, Andriy A. Sibirny, Valentina Sica, Christina J. Sigurdson, Einar M. Sigurdsson, Puran Singh Sijwali, Beata Sikorska, Wilian A. Silveira, Sandrine Silvente Poirot, Gary A. Silverman, Jan Simak, Thomas Simmet, Anna Katharina Simon, Hans Uwe Simon, Cristiano Simone, Matias Simons, Anne Simonsen, Rajat Singh, Shivendra V. Singh, Shrawan K. Singh, Debasish Sinha, Sangita Sinha, Frank A. Sinicrope, Agnieszka Sirko, Kapil Sirohi, Balindiwe JN Sishi, Annie Sittler, Parco M. Siu, Efthimios Sivridis, Anna Skwarska, Ruth Slack, Iva Slaninová, Nikolai Slavov, Soraya S. Smaili, Keiran SM Smalley, Duncan R. Smith, Stefaan J. Soenen, Scott A. Soleimanpour, Anita Solhaug, Kumaravel Somasundaram, Jin H. Son, Avinash Sonawane, Chunjuan Song, Fuyong Song, Hyun Kyu Song, Ju Xian Song, Wei Song, Kai Y. Soo, Anil K. Sood, Tuck Wah Soong, Virawudh Soontornniyomkij, Maurizio Sorice, Federica Sotgia, David R. Soto Pantoja, Areechun Sotthibundhu, Maria João Sousa, Herman P. Spaink, Paul N. Span, Anne Spang, Janet D. Sparks, Peter G. Speck, Stephen A. Spector, Claudia D. Spies, Wolfdieter Springer, Daret St Clair, Alessandra Stacchiotti, Bart Staels, Michael T. Stang, Daniel T. Starczynowski, Petro Starokadomskyy, Clemens Steegborn, John W. Steele, Leonidas Stefanis, Joan Steffan, Christine M. Stellrecht, Harald Stenmark, Tomasz M. Stepkowski, Stęphan T. Stern, Craig Stevens, Brent R. Stockwell, Veronika Stoka, Zuzana Storchova, Björn Stork, Vassilis Stratoulias, Dimitrios J. Stravopodis, Pavel Strnad, Anne Marie Strohecker, Anna Lena Ström, Per Stromhaug, Jiri Stulik, Yu Xiong Su, Zhaoliang Su, Carlos S. Subauste, Srinivasa Subramaniam, Carolyn M. Sue, Sang Won Suh, Xinbing Sui, Supawadee Sukseree, David Sulzer, Fang Lin Sun, Jiaren Sun, Jun Sun, Shi Yong Sun, Yang Sun, Yi Sun, Yingjie Sun, Vinod Sundaramoorthy, Joseph Sung, Hidekazu Suzuki, Kuninori Suzuki, Naoki Suzuki, Tadashi Suzuki, Yuichiro J. Suzuki, Michele S. Swanson, Charles Swanton, Karl Swärd, Ghanshyam Swarup, Sean T. Sweeney, Paul W. Sylvester, Zsuzsanna Szatmari, Eva Szegezdi, Peter W. Szlosarek, Heinrich Taegtmeyer, Marco Tafani, Emmanuel Taillebourg, Stephen WG Tait, Krisztina Takacs Vellai, Yoshinori Takahashi, Szabolcs Takáts, Genzou Takemura, Nagio Takigawa, Nicholas J. Talbot, Elena Tamagno, Jerome Tamburini, Cai Ping Tan, Lan Tan, Mei Lan Tan, Ming Tan, Yee Joo Tan, Keiji Tanaka, Masaki Tanaka, Daolin Tang, Dingzhong Tang, Guomei Tang, Isei Tanida, Kunikazu Tanji, Bakhos A. Tannous, Jose A. Tapia, Inmaculada Tasset Cuevas, Marc Tatar, Iman Tavassoly, Nektarios Tavernarakis, Allen Taylor, Graham S. Taylor, Gregory A. Taylor, J. Paul Taylor, Mark J. Taylor, Elena V. Tchetina, Andrew R. Tee, Fatima Teixeira Clerc, Sucheta Telang, Tewin Tencomnao, Ba Bie Teng, Ru Jeng Teng, Faraj Terro, Gianluca Tettamanti, Arianne L. Theiss, Anne E. Theron, Kelly Jean Thomas, Marcos P. Thomé, Paul G. Thomes, Andrew Thorburn, Jeremy Thorner, Thomas Thum, Michael Thumm, Teresa LM Thurston, Ling Tian, Andreas Till, Jenny Pan yun Ting, Vladimir I. Titorenko, Lilach Toker, Stefano Toldo, Sharon A. Tooze, Ivan Topisirovic, Maria Lyngaas Torgersen, Liliana Torosantucci, Alicia Torriglia, Maria Rosaria Torrisi, Cathy Tournier, Roberto Towns, Vladimir Trajkovic, Leonardo H. Travassos, Gemma Triola, Durga Nand Tripathi, Daniela Trisciuoglio, Rodrigo Troncoso, Ioannis P. Trougakos, Anita C. Truttmann, Kuen Jer Tsai, Mario P. Tschan, Yi Hsin Tseng, Takayuki Tsukuba, Allan Tsung, Andrey S. Tsvetkov, Shuiping Tu, Hsing Yu Tuan, Marco Tucci, David A. Tumbarello, Boris Turk, Vito Turk, Robin FB Turner, Anders A. Tveita, Suresh C. Tyagi, Makoto Ubukata, Yasuo Uchiyama, Andrej Udelnow, Takashi Ueno, Midori Umekawa, Rika Umemiya Shirafuji, Benjamin R. Underwood, Christian Ungermann, Rodrigo P. Ureshino, Ryo Ushioda, Vladimir N. Uversky, Néstor L. Uzcátegui, Thomas Vaccari, Maria I. Vaccaro, Libuše Váchová, Helin Vakifahmetoglu Norberg, Rut Valdor, Enza Maria Valente, Francois Vallette, Angela M. Valverde, Greet Van den Berghe, Ludo Van Den Bosch, Gijs R. van den Brink, F. Gisou van der Goot, Ida J. van der Klei, Luc JW van der Laan, Wouter G. van Doorn, Marjolein van Egmond, Kenneth L. van Golen, Luc Van Kaer, Menno van Lookeren Campagne, Peter Vandenabeele, Wim Vandenberghe, Ilse Vanhorebeek, Isabel Varela Nieto, M. Helena Vasconcelos, Radovan Vasko, Demetrios G. Vavvas, Ignacio Vega Naredo, Guillermo Velasco, Athanassios D. Velentzas, Panagiotis D. Velentzas, Tibor Vellai, Edo Vellenga, Mikkel Holm Vendelbo, Kartik Venkatachalam, Natascia Ventura, Salvador Ventura, Patrícia ST Veras, Mireille Verdier, Beata G. Vertessy, Andrea Viale, Michel Vidal, Helena LA Vieira, Richard D. Vierstra, Nadarajah Vigneswaran, Neeraj Vij, Miquel Vila, Margarita Villar, Victor H. Villar, Joan Villarroya, Cécile Vindis, Giampietro Viola, Maria Teresa Viscomi, Giovanni Vitale, Dan T. Vogl, Olga V. Voitsekhovskaja, Clarissa von Haefen, Karin von Schwarzenberg, Daniel E. Voth, Valérie Vouret Craviari, Kristina Vuori, Jatin M. Vyas, Christian Waeber, Cheryl Lyn Walker, Mark J. Walker, Jochen Walter, Lei Wan, Xiangbo Wan, Bo Wang, Caihong Wang, Chao Yung Wang, Chengshu Wang, Chenran Wang, Chuangui Wang, Dong Wang, Fen Wang, Fuxin Wang, Guanghui Wang, Hai jie Wang, Haichao Wang, Hong Gang Wang, Hongmin Wang, Horng Dar Wang, Jing Wang, Junjun Wang, Mei Wang, Mei Qing Wang, Pei Yu Wang, Peng Wang, Richard C. Wang, Shuo Wang, Ting Fang Wang, Xian Wang, Xiao jia Wang, Xiao Wei Wang, Xin Wang, Xuejun Wang, Yan Wang, Yanming Wang, Ying Wang, Ying Jan Wang, Yipeng Wang, Yu Wang, Yu Tian Wang, Yuqing Wang, Zhi Nong Wang, Pablo Wappner, Carl Ward, Diane McVey Ward, Gary Warnes, Hirotaka Watada, Yoshihisa Watanabe, Kei Watase, Timothy E. Full Terms, Conditions of access, use can be found at h.t.t.p.:././.w.w.w. t.a.n.d.f.o.n.l.i.n.e. com/action/journalInformation?journalCode=kaup20 Download by: [Alma Mater Studiorum Università di Bologna] Date: 23 September 2016, At: 06:43 Weaver, Colin D. Weekes, Jiwu Wei, Thomas Weide, Conrad C. Weihl, Günther Weindl, Simone Nardin Weis, Longping Wen, Xin Wen, Yunfei Wen, Benedikt Westermann, Cornelia M. Weyand, Anthony R. White, Eileen White, J. Lindsay Whitton, Alexander J. Whitworth, Joëlle Wiels, Franziska Wild, Manon E. Wildenberg, Tom Wileman, Deepti Srinivas Wilkinson, Simon Wilkinson, Dieter Willbold, Chris Williams, Katherine Williams, Peter R. Williamson, Konstanze F. Winklhofer, Steven S. Witkin, Stephanie E. Wohlgemuth, Thomas Wollert, Ernst J. Wolvetang, Esther Wong, G. William Wong, Richard W. Wong, Vincent Kam Wai Wong, Elizabeth A. Woodcock, Karen L. 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Yeyati, Fan Yi, Long Yi, Xiao Ming Yin, Calvin K. Yip, Yeong Min Yoo, Young Hyun Yoo, Seung Yong Yoon, Ken Ichi Yoshida, Tamotsu Yoshimori, Ken H. Young, Huixin Yu, Jane J. Yu, Jin Tai Yu, Jun Yu, Li Yu, W. Haung Yu, Xiao Fang Yu, Zhengping Yu, Junying Yuan, Zhi Min Yuan, Beatrice YJT Yue, Jianbo Yue, Zhenyu Yue, David N. Zacks, Eldad Zacksenhaus, Nadia Zaffaroni, Tania Zaglia, Zahra Zakeri, Vincent Zecchini, Jinsheng Zeng, Min Zeng, Qi Zeng, Antonis S. Zervos, Donna D. Zhang, Fan Zhang, Guo Zhang, Guo Chang Zhang, Hao Zhang, Hong Zhang, Hongbing Zhang, Jian Zhang, Jiangwei Zhang, Jianhua Zhang, Jing pu Zhang, Li Zhang, Lin Zhang, Long Zhang, Ming Yong Zhang, Xiangnan Zhang, Xu Dong Zhang, Yan Zhang, Yang Zhang, Yanjin Zhang, Yingmei Zhang, Yunjiao Zhang, Mei Zhao, Wei Li Zhao, Xiaonan Zhao, Yan G. Zhao, Ying Zhao, Yongchao Zhao, Yu xia Zhao, Zhendong Zhao, Zhizhuang J. Zhao, Dexian Zheng, Xi Long Zheng, Xiaoxiang Zheng, Boris Zhivotovsky, Qing Zhong, Guang Zhou Zhou, Guofei Zhou, Huiping Zhou, Shu Feng Zhou, Xu jie Zhou, Hongxin Zhu, Hua Zhu, Wei Guo Zhu, Wenhua Zhu, Xiao Feng Zhu, Yuhua Zhu, Shi Mei Zhuang, Xiaohong Zhuang, Elio Ziparo, Christos E. Zois, Teresa Zoladek, Wei Xing Zong, Antonio Zorzano, Susu M. Zughaier, Life Sciences Institute and Department of Molecular, Cellular, and Developmental Biology and Biological Chemistry, University of Michigan [Ann Arbor], University of Michigan System-University of Michigan System, Tokyo Medical University, The Hebrew University of Jerusalem (HUJ), Mammalian Genetics Unit, Medical Research Council Harwell, University of Occupational and Environmental Health School of Medicine, Partenaires INRAE, University of Toronto, Ben-Gurion University of the Negev (BGU), University of Colorado [Boulder], Cell Death Research & Therapy (CDRT) Lab, Université Catholique de Louvain = Catholic University of Louvain (UCL), University of Vienna [Vienna], Conway Institute of Biomolecular and Biomedical Research and School of Chemical and Bioprocess Engineering, University College Dublin [Dublin] (UCD), Georgetown University, Candiolo Cancer Institute (IRCCS), Centro de Investigacion Biomédica en Red sobre Enfermedades Neurodegenerativas (CIBERNED), Instituto de Salud Carlos III [Madrid] (ISC), Ikerbasque - Basque Foundation for Science, Cleveland Clinic, Sidney Kimmel Cancer Center, Jefferson (Philadelphia University + Thomas Jefferson University), Universidad de Buenos Aires (UBA), Department of Clinical Neurosciences, University College of London [London] (UCL)-Institute of Neurology, Thérapie génique, Génomique et Epigénomique (U 1169), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Paris-Saclay, Consiglio Nazionale delle Ricerche (CNR), Osaka University, Department of Experimental Medicine and Public Health, University of Camerino, University of Barcelona, Institut Universitaire d'Hématologie (IUH), Université Paris Diderot - Paris 7 (UPD7), Génomique Fonctionnelle des Tumeurs Solides (U1162), Université Paris 13 (UP13)-Université Paris Diderot - Paris 7 (UPD7)-Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM), Université Paris Descartes - Paris 5 (UPD5), Institut National de la Santé et de la Recherche Médicale (INSERM), Department of Physics, Technical University of Denmark [Lyngby] (DTU), University of Zaragoza - Universidad de Zaragoza [Zaragoza], Department of Pharmaco-Biology, Università della Calabria [Arcavacata di Rende] (Unical), Fondation Universitaire Notre Dame de la Paix (FUNDP), Facultés Universitaires Notre Dame de la Paix (FUNDP), USC Neuromuscular Center, Department of Neurology, University of Southern California (USC), Physiopathologie de la survie et de la mort cellulaire et infection virale, Université Nice Sophia Antipolis (... - 2019) (UNS), COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-IFR50-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Côte d'Azur (UCA), Giannina Gaslini Institute, Institut des Sciences de l'Evolution de Montpellier (UMR ISEM), École pratique des hautes études (EPHE), Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Université de Montpellier (UM)-Centre de Coopération Internationale en Recherche Agronomique pour le Développement (Cirad)-Centre National de la Recherche Scientifique (CNRS)-Institut de recherche pour le développement [IRD] : UR226, Inner Mongolia Agricultural University (IMAU), Politecnico di Milano [Milan] (POLIMI), Department of Civil, Geological, and Mining Engineering, École Polytechnique de Montréal (EPM)-NSERC Industrial Chair on Drinking Water, Institut de Recherche sur le Cancer et le Vieillissement (IRCAN), COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Université Côte d'Azur (UCA), Department of Molecular Medicine, Institut Pasteur, Fondation Cenci Bolognetti - Istituto Pasteur Italia, Fondazione Cenci Bolognetti, Réseau International des Instituts Pasteur (RIIP)-Réseau International des Instituts Pasteur (RIIP)-Università degli Studi di Roma 'La Sapienza' = Sapienza University [Rome], Physiopathologie du système nerveux central - Institut François Magendie, Université Bordeaux Segalen - Bordeaux 2-IFR8-Institut National de la Santé et de la Recherche Médicale (INSERM), Laboratory of Experimental Virology - Department of Medical Microbiology [Amsterdam, The Netherlands], Academic Medical Center - Academisch Medisch Centrum [Amsterdam] (AMC), University of Amsterdam [Amsterdam] (UvA)-University of Amsterdam [Amsterdam] (UvA)-Center for Infection and Immunity Amsterdam - CINIMA [Amsterdam, The Netherlands], Centre de résonance magnétique biologique et médicale (CRMBM), Aix Marseille Université (AMU)-Assistance Publique - Hôpitaux de Marseille (APHM)-Centre National de la Recherche Scientifique (CNRS), Dynamique des interactions membranaires normales et pathologiques (DIMNP), Centre National de la Recherche Scientifique (CNRS)-Université de Montpellier (UM)-Université Montpellier 2 - Sciences et Techniques (UM2)-Université Montpellier 1 (UM1), Department of Internal Medicine, Hospital Universitario Infanta Sofía, Celullar and Molecular Medicine, Infection bactérienne, inflammation, et carcinogenèse digestive, University of Edinburgh, Unité de Nutrition Humaine (UNH), Institut National de la Recherche Agronomique (INRA)-Université d'Auvergne - Clermont-Ferrand I (UdA)-Clermont Université, Faculty of Engineering and Natural Sciences, Sabanci University [Istanbul], University of Science and Technology Beijing [Beijing] (USTB), Centre for Computational and Systems Biology (COSBI), Sun Yat-Sen University [Guangzhou] (SYSU), Dynamique Musculaire et Métabolisme (DMEM), Université de Montpellier (UM)-Institut National de la Recherche Agronomique (INRA), CAS Institute of Oceanology (IOCAS), Chinese Academy of Sciences [Beijing] (CAS), Polytechnic University of Marche, Centre de Recherche en Cancérologie de Marseille (CRCM), Aix Marseille Université (AMU)-Institut Paoli-Calmettes, Fédération nationale des Centres de lutte contre le Cancer (FNCLCC)-Fédération nationale des Centres de lutte contre le Cancer (FNCLCC)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Cell Biology, Physiology and Immunology, Department of Experimental Oncology and Molecular Medicine, Fondazione IRCCS Istituto Nazionale dei Tumori, University of Pisa - Università di Pisa, Dulbecco Telethon Institute/Department of Biology, Fondation de Recherche Cancer et Sang - Hôpital Kirchberg, China University of Petroleum, Unilever R&D, University of Queensland [Brisbane], University of Minnesota [Twin Cities] (UMN), University of Minnesota System, Laboratoire de Génie des Procédés et Matériaux - EA 4038 (LGPM), CentraleSupélec, Institute for Advanced Study [Tsinghua], Tsinghua University [Beijing] (THU), Nanayang Technological University (NTU), Nanayang Technological University, Institute of Microelectronics [Beijing] (IMETU), Laboratoire de photonique et de nanostructures (LPN), Centre National de la Recherche Scientifique (CNRS), Institut de biologie moléculaire des plantes (IBMP), Centre National de la Recherche Scientifique (CNRS)-Université de Strasbourg (UNISTRA), Northwestern Polytechnical University [Xi'an] (NPU), University of Pennsylvania [Philadelphia], City University of Hong Kong (CityU), Department of Mathematics [Berkeley], University of California [Berkeley], University of California-University of California, ZJU-ENS Joint Laboratory of Medicinal Chemistry, Zhejiang University, University of Cincinnati (UC), Réponses immunes : régulation et développement, Université Paris Diderot - Paris 7 (UPD7)-Institut National de la Santé et de la Recherche Médicale (INSERM), The University of New Mexico [Albuquerque], Centre de Recherche de l'Institut du Cerveau et de la Moelle épinière (CRICM), Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Dipartimento di Scienze Biomediche, Università degli Studi di Modena e Reggio Emilia (UNIMORE), Department of Experimental Medicine and Oncology, University of Turin, Institut de Génomique Fonctionnelle (IGF), Université de Montpellier (UM)-Université Montpellier 1 (UM1)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Montpellier 2 - Sciences et Techniques (UM2)-Centre National de la Recherche Scientifique (CNRS), CNV, University of Valparaiso, Université Paris 1 Panthéon-Sorbonne - UFR d'Arts plastiques et sciences de l'art (UP1 UFR04), Université Paris 1 Panthéon-Sorbonne (UP1), Department of General, Visceral and Vascular Surgery [Jena], Friedrich-Schiller-Universität Jena, Récepteurs nucléaires, maladies cardiovasculaires et diabète - U 1011 (RNMCD), Institut Pasteur de Lille, Réseau International des Instituts Pasteur (RIIP)-Réseau International des Instituts Pasteur (RIIP)-Université de Lille-Centre Hospitalier Régional Universitaire [Lille] (CHRU Lille)-Institut National de la Santé et de la Recherche Médicale (INSERM), Réseau International des Instituts Pasteur (RIIP), Macrophages et Développement de l’Immunité, Institut Pasteur [Paris]-Centre National de la Recherche Scientifique (CNRS), Immunobiologie des Cellules Dendritiques, Institut Pasteur [Paris]-Institut National de la Santé et de la Recherche Médicale (INSERM), Centre d'infectiologie Necker-Pasteur [CHU Necker], Institut Pasteur [Paris]-CHU Necker - Enfants Malades [AP-HP], Assistance publique - Hôpitaux de Paris (AP-HP) (AP-HP)-Assistance publique - Hôpitaux de Paris (AP-HP) (AP-HP), Institut Pasteur [Paris], Trafic membranaire et Division cellulaire - Membrane Traffic and Cell Division, Centre National de la Recherche Scientifique (CNRS)-Institut Pasteur [Paris], Cibles thérapeutiques, formulation et expertise pré-clinique du médicament (CITHEFOR), Université de Lorraine (UL), This work was supported in part by the National Institutes of Health, including Public Health Service grant GM053396 to D.J.K. Due to space and other limitations, it is not possible to include all other sources of financial support., In a rapidly expanding and highly dynamic field such as autophagy, it is possible that some authors who should have been included on this article have been missed. D.J.K. extends his apologies to researchers in the field of autophagy who, due to oversight or any other reason, could not be included on this article. I also note that two of our colleagues on this manuscript have passed away: Arlette Darfeuille-Michaud and Wouter van Doorn., Life Sciences Institute [Ann Arbor, MI, USA], Laboratoire de Biogenèse Membranaire, CNRS UMR 5200, Université de Bordeaux, INRA Bordeaux Aquitaine, Villenave d'Ornon, France., Amelio, Ivano [0000-0002-9126-5391], Beale, Rupert [0000-0002-6705-8560], Floto, Andres [0000-0002-2188-5659], Frezza, Christian [0000-0002-3293-7397], Ktistakis, Nicholas [0000-0001-9397-2914], Melino, Gerry [0000-0001-9428-5972], Narita, Masashi [0000-0001-7764-577X], Rubinsztein, David [0000-0001-5002-5263], Underwood, Benjamin [0000-0003-3427-9487], Whitworth, Alex [0000-0002-1154-6629], Apollo - University of Cambridge Repository, Université Catholique de Louvain, Facultés Universitaires Notre-Dame de la Paix, Institut National de la Santé et de la Recherche Médicale (INSERM)-IFR50-Université Nice Sophia Antipolis (... - 2019) (UNS), Université Côte d'Azur (UCA)-Université Côte d'Azur (UCA), Centre de Coopération Internationale en Recherche Agronomique pour le Développement (Cirad)-École pratique des hautes études (EPHE)-Université de Montpellier (UM)-Institut de recherche pour le développement [IRD] : UR226-Centre National de la Recherche Scientifique (CNRS), Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Nice Sophia Antipolis (... - 2019) (UNS), Department of Clinical and Molecular Medicine, Réseau International des Instituts Pasteur (RIIP)-Réseau International des Instituts Pasteur (RIIP)-Università degli Studi di Roma 'La Sapienza' [Rome], Université Montpellier 1 (UM1)-Université Montpellier 2 - Sciences et Techniques (UM2)-Université de Montpellier (UM)-Centre National de la Recherche Scientifique (CNRS), Université Côte d'Azur (UCA)-Université Côte d'Azur (UCA)-IFR50-Institut National de la Santé et de la Recherche Médicale (INSERM), Unité de Nutrition Humaine - Clermont Auvergne (UNH), Institut National de la Recherche Agronomique (INRA)-Université Clermont Auvergne (UCA), Sun Yat-Sen University (SYSU), Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Institut Paoli-Calmettes, Fédération nationale des Centres de lutte contre le Cancer (FNCLCC)-Fédération nationale des Centres de lutte contre le Cancer (FNCLCC)-Aix Marseille Université (AMU), University of Minnesota [Twin Cities], Tsinghua University [Beijing], Université de Strasbourg (UNISTRA)-Centre National de la Recherche Scientifique (CNRS), Université Panthéon-Sorbonne - UFR d'Arts plastiques et sciences de l'art (UP1 UFR04), Université Panthéon-Sorbonne (UP1), Récepteurs nucléaires, maladies cardiovasculaires et diabète (EGID), Université de Lille, Droit et Santé-Institut National de la Santé et de la Recherche Médicale (INSERM)-Institut Pasteur de Lille, Réseau International des Instituts Pasteur (RIIP)-Réseau International des Instituts Pasteur (RIIP)-Centre Hospitalier Régional Universitaire [Lille] (CHRU Lille), CHU Necker - Enfants Malades [AP-HP], Trafic membranaire et Division cellulaire, Institut de Biologie du Développement de Marseille (IBDM), Aix Marseille Université (AMU)-Collège de France (CdF)-Centre National de la Recherche Scientifique (CNRS), Klionsky, D., Abdelmohsen, K., Abe, A., Abedin, M., Abeliovich, H., Acevedo Arozena, A., Adachi, H., Adams, C., Adams, P., Adeli, K., Adhihetty, P., Adler, S., Agam, G., Agarwal, R., Aghi, M., Agnello, M., Agostinis, P., Aguilar, P., Aguirre-Ghiso, J., Airoldi, E., Ait-Si-Ali, S., Akematsu, T., Akporiaye, E., Al-Rubeai, M., Albaiceta, G., Albanese, C., Albani, D., Albert, M., Aldudo, J., Algül, H., Alirezaei, M., Alloza, I., Almasan, A., Almonte-Beceril, M., Alnemri, E., Alonso, C., Altan-Bonnet, N., Altieri, D., Alvarez, S., Alvarez-Erviti, L., Alves, S., Amadoro, G., Amano, A., Amantini, C., Ambrosio, S., Amelio, I., Amer, A., Amessou, M., Amon, A., An, Z., Anania, F., Andersen, S., Andley, U., Andreadi, C., Andrieu-Abadie, N., Anel, A., Ann, D., Anoopkumar-Dukie, S., Antonioli, M., Aoki, H., Apostolova, N., Aquila, S., Aquilano, K., Araki, K., Arama, E., Aranda, A., Araya, J., Arcaro, A., Arias, E., Arimoto, H., Ariosa, A., Armstrong, J., Arnould, T., Arsov, I., Asanuma, K., Askanas, V., Asselin, E., Atarashi, R., Atherton, S., Atkin, J., Attardi, L., Auberger, P., Auburger, G., Aurelian, L., Autelli, R., Avagliano, L., Avantaggiati, M., Avrahami, L., Awale, S., Azad, N., Bachetti, T., Backer, J., Bae, D., Bae, J., Bae, O., Bae, S., Baehrecke, E., Baek, S., Baghdiguian, S., Bagniewska-Zadworna, A., Bai, H., Bai, J., Bai, X., Bailly, Y., Balaji, K., Balduini, W., Ballabio, A., Balzan, R., Banerjee, R., Bánhegyi, G., Bao, H., Barbeau, B., Barrachina, M., Barreiro, E., Bartel, B., Bartolomé, A., Bassham, D., Bassi, M., Bast, R., Basu, A., Batista, M., Batoko, H., Battino, M., Bauckman, K., Baumgarner, B., Bayer, K., Beale, R., Beaulieu, J., Beck, G., Becker, C., Beckham, J., Bédard, P., Bednarski, P., Begley, T., Behl, C., Behrends, C., Behrens, G., Behrns, K., Bejarano, E., Belaid, A., Belleudi, F., Bénard, G., Berchem, G., Bergamaschi, D., Bergami, M., Berkhout, B., Berliocchi, L., Bernard, A., Bernard, M., Bernassola, F., Bertolotti, A., Bess, A., Besteiro, S., Bettuzzi, S., Bhalla, S., Bhattacharyya, S., Bhutia, S., Biagosch, C., Bianchi, M., Biard-Piechaczyk, M., Billes, V., Bincoletto, C., Bingol, B., Bird, S., Bitoun, M., Bjedov, I., Blackstone, C., Blanc, L., Blanco, G., Blomhoff, H., Boada-Romero, E., Böckler, S., Boes, M., Boesze-Battaglia, K., Boise, L., Bolino, A., Boman, A., Bonaldo, P., Bordi, M., Bosch, J., Botana, L., Botti, J., Bou, G., Bouché, M., Bouchecareilh, M., Boucher, M., Boulton, M., Bouret, S., Boya, P., Boyer-Guittaut, M., Bozhkov, P., Brady, N., Braga, V., Brancolini, C., Braus, G., Bravo-San Pedro, J., Brennan, L., Bresnick, E., Brest, P., Bridges, D., Bringer, M., Brini, M., Brito, G., Brodin, B., Brookes, P., Brown, E., Brown, K., Broxmeyer, H., Bruhat, A., Brum, P., Brumell, J., Brunetti-Pierri, N., Bryson-Richardson, R., Buch, S., Buchan, A., Budak, H., Bulavin, D., Bultman, S., Bultynck, G., Bumbasirevic, V., Burelle, Y., Burke, R., Burmeister, M., Bütikofer, P., Caberlotto, L., Cadwell, K., Cahova, M., Cai, D., Cai, J., Cai, Q., Calatayud, S., Camougrand, N., Campanella, M., Campbell, G., Campbell, M., Campello, S., Candau, R., Caniggia, I., Cantoni, L., Cao, L., Caplan, A., Caraglia, M., Cardinali, C., Cardoso, S., Carew, J., Carleton, L., Carlin, C., Carloni, S., Carlsson, S., Carmona-Gutierrez, D., Carneiro, L., Carnevali, O., Carra, S., Carrier, A., Carroll, B., Casas, C., Casas, J., Cassinelli, G., Castets, P., Castro-Obregon, S., Cavallini, G., Ceccherini, I., Cecconi, F., Cederbaum, A., Ceña, V., Cenci, S., Cerella, C., Cervia, D., Cetrullo, S., Chaachouay, H., Chae, H., Chagin, A., Chai, C., Chakrabarti, G., Chamilos, G., Chan, E., Chan, M., Chandra, D., Chandra, P., Chang, C., Chang, R., Chang, T., Chatham, J., Chatterjee, S., Chauhan, S., Che, Y., Cheetham, M., Cheluvappa, R., Chen, C., Chen, G., Chen, H., Chen, J., Chen, M., Chen, P., Chen, Q., Chen, S., Chen, W., Chen, X., Chen, Y., Chen, Z., Cheng, A., Cheng, C., Cheng, H., Cheong, H., Cherry, S., Chesney, J., Cheung, C., Chevet, E., Chi, H., Chi, S., Chiacchiera, F., Chiang, H., Chiarelli, R., Chiariello, M., Chieppa, M., Chin, L., Chiong, M., Chiu, G., Cho, D., Cho, S., Cho, W., Cho, Y., Choi, A., Choi, E., Choi, J., Choi, M., Choi, S., Chou, T., Chouaib, S., Choubey, D., Choubey, V., Chow, K., Chowdhury, K., Chu, C., Chuang, T., Chun, T., Chung, H., Chung, T., Chung, Y., Chwae, Y., Cianfanelli, V., Ciarcia, R., Ciechomska, I., Ciriolo, M., Cirone, M., Claerhout, S., Clague, M., Clària, J., Clarke, P., Clarke, R., Clementi, E., Cleyrat, C., Cnop, M., Coccia, E., Cocco, T., Codogno, P., Coers, J., Cohen, E., Colecchia, D., Coletto, L., Coll, N., Colucci-Guyon, E., Comincini, S., Condello, M., Cook, K., Coombs, G., Cooper, C., Cooper, J., Coppens, I., Corasaniti, M., Corazzari, M., Corbalan, R., Corcelle-Termeau, E., Cordero, M., Corral-Ramos, C., Corti, O., Cossarizza, A., Costelli, P., Costes, S., Cotman, S., Coto-Montes, A., Cottet, S., Couve, E., Covey, L., Cowart, L., Cox, J., Coxon, F., Coyne, C., Cragg, M., Craven, R., Crepaldi, T., Crespo, J., Criollo, A., Crippa, V., Cruz, M., Cuervo, A., Cuezva, J., Cui, T., Cutillas, P., Czaja, M., Czyzyk-Krzeska, M., Dagda, R., Dahmen, U., Dai, C., Dai, W., Dai, Y., Dalby, K., Dalla Valle, L., Dalmasso, G., D'Amelio, M., Damme, M., Darfeuille-Michaud, A., Dargemont, C., Darley-Usmar, V., Dasarathy, S., Dasgupta, B., Dash, S., Dass, C., Davey, H., Davids, L., Dávila, D., Davis, R., Dawson, T., Dawson, V., Daza, P., de Belleroche, J., de Figueiredo, P., de Figueiredo, R., de la Fuente, J., De Martino, L., De Matteis, A., De Meyer, G., De Milito, A., De Santi, M., de Souza, W., De Tata, V., De Zio, D., Debnath, J., Dechant, R., Decuypere, J., Deegan, S., Dehay, B., Del Bello, B., Del Re, D., Delage-Mourroux, R., Delbridge, L., Deldicque, L., Delorme-Axford, E., Deng, Y., Dengjel, J., Denizot, M., Dent, P., Der, C., Deretic, V., Derrien, B., Deutsch, E., Devarenne, T., Devenish, R., Di Bartolomeo, S., Di Daniele, N., Di Domenico, F., Di Nardo, A., Di Paola, S., Di Pietro, A., Di Renzo, L., Diantonio, A., Díaz-Araya, G., Díaz-Laviada, I., Diaz-Meco, M., Diaz-Nido, J., Dickey, C., Dickson, R., Diederich, M., Digard, P., Dikic, I., Dinesh-Kumar, S., Ding, C., Ding, W., Ding, Z., Dini, L., Distler, J., Diwan, A., Djavaheri-Mergny, M., Dmytruk, K., Dobson, R., Doetsch, V., Dokladny, K., Dokudovskaya, S., Donadelli, M., Dong, X., Dong, Z., Donohue, T., Doran, K., D'Orazi, G., Dorn, G., Dosenko, V., Dridi, S., Drucker, L., Du, J., Du, L., du Toit, A., Dua, P., Duan, L., Duann, P., Dubey, V., Duchen, M., Duchosal, M., Duez, H., Dugail, I., Dumit, V., Duncan, M., Dunlop, E., Dunn, W., Dupont, N., Dupuis, L., Durán, R., Durcan, T., Duvezin-Caubet, S., Duvvuri, U., Eapen, V., Ebrahimi-Fakhari, D., Echard, A., Eckhart, L., Edelstein, C., Edinger, A., Eichinger, L., Eisenberg, T., Eisenberg-Lerner, A., Eissa, N., El-Deiry, W., El-Khoury, V., Elazar, Z., Eldar-Finkelman, H., Elliott, C., Emanuele, E., Emmenegger, U., Engedal, N., Engelbrecht, A., Engelender, S., Enserink, J., Erdmann, R., Erenpreisa, J., Eri, R., Eriksen, J., Erman, A., Escalante, R., Eskelinen, E., Espert, L., Esteban-Martínez, L., Evans, T., Fabri, M., Fabrias, G., Fabrizi, C., Facchiano, A., Færgeman, N., Faggioni, A., Fairlie, W., Fan, C., Fan, D., Fan, J., Fang, S., Fanto, M., Fanzani, A., Farkas, T., Faure, M., Favier, F., Fearnhead, H., Federici, M., Fei, E., Felizardo, T., Feng, H., Feng, Y., Ferguson, T., Fernández, Á., Fernandez-Barrena, M., Fernandez-Checa, J., Fernández-López, A., Fernandez-Zapico, M., Feron, O., Ferraro, E., Ferreira-Halder, C., Fesus, L., Feuer, R., Fiesel, F., Filippi-Chiela, E., Filomeni, G., Fimia, G., Fingert, J., Finkbeiner, S., Finkel, T., Fiorito, F., Fisher, P., Flajolet, M., Flamigni, F., Florey, O., Florio, S., Floto, R., Folini, M., Follo, C., Fon, E., Fornai, F., Fortunato, F., Fraldi, A., Franco, R., Francois, A., François, A., Frankel, L., Fraser, I., Frey, N., Freyssenet, D., Frezza, C., Friedman, S., Frigo, D., Fu, D., Fuentes, J., Fueyo, J., Fujitani, Y., Fujiwara, Y., Fujiya, M., Fukuda, M., Fulda, S., Fusco, C., Gabryel, B., Gaestel, M., Gailly, P., Gajewska, M., Galadari, S., Galili, G., Galindo, I., Galindo, M., Galliciotti, G., Galluzzi, L., Galy, V., Gammoh, N., Gandy, S., Ganesan, A., Ganesan, S., Ganley, I., Gannagé, M., Gao, F., Gao, J., García Nannig, L., García Véscovi, E., Garcia-Macía, M., Garcia-Ruiz, C., Garg, A., Garg, P., Gargini, R., Gassen, N., Gatica, D., Gatti, E., Gavard, J., Gavathiotis, E., Ge, L., Ge, P., Ge, S., Gean, P., Gelmetti, V., Genazzani, A., Geng, J., Genschik, P., Gerner, L., Gestwicki, J., Gewirtz, D., Ghavami, S., Ghigo, E., Ghosh, D., Giammarioli, A., Giampieri, F., Giampietri, C., Giatromanolaki, A., Gibbings, D., Gibellini, L., Gibson, S., Ginet, V., Giordano, A., Giorgini, F., Giovannetti, E., Girardin, S., Gispert, S., Giuliano, S., Gladson, C., Glavic, A., Gleave, M., Godefroy, N., Gogal, R., Gokulan, K., Goldman, G., Goletti, D., Goligorsky, M., Gomes, A., Gomes, L., Gomez, H., Gomez-Manzano, C., Gómez-Sánchez, R., Gonçalves, D., Goncu, E., Gong, Q., Gongora, C., Gonzalez, C., Gonzalez-Alegre, P., Gonzalez-Cabo, P., González-Polo, R., Goping, I., Gorbea, C., Gorbunov, N., Goring, D., Gorman, A., Gorski, S., Goruppi, S., Goto-Yamada, S., Gotor, C., Gottlieb, R., Gozes, I., Gozuacik, D., Graba, Y., Graef, M., Granato, G., Grant, G., Grant, S., Gravina, G., Green, D., Greenhough, A., Greenwood, M., Grimaldi, B., Gros, F., Grose, C., Groulx, J., Gruber, F., Grumati, P., Grune, T., Guan, J., Guan, K., Guerra, B., Guillen, C., Gulshan, K., Gunst, J., Guo, C., Guo, L., Guo, M., Guo, W., Guo, X., Gust, A., Gustafsson, Å., Gutierrez, E., Gutierrez, M., Gwak, H., Haas, A., Haber, J., Hadano, S., Hagedorn, M., Hahn, D., Halayko, A., Hamacher-Brady, A., Hamada, K., Hamai, A., Hamann, A., Hamasaki, M., Hamer, I., Hamid, Q., Hammond, E., Han, F., Han, W., Handa, J., Hanover, J., Hansen, M., Harada, M., Harhaji-Trajkovic, L., Harper, J., Harrath, A., Harris, A., Harris, J., Hasler, U., Hasselblatt, P., Hasui, K., Hawley, R., Hawley, T., He, C., He, F., He, G., He, R., He, X., He, Y., Heath, J., Hébert, M., Heinzen, R., Helgason, G., Hensel, M., Henske, E., Her, C., Herman, P., Hernández, A., Hernandez, C., Hernández-Tiedra, S., Hetz, C., Hiesinger, P., Higaki, K., Hilfiker, S., Hill, B., Hill, J., Hill, W., Hino, K., Hofius, D., Hofman, P., Höglinger, G., Höhfeld, J., Holz, M., Hong, Y., Hood, D., Hoozemans, J., Hoppe, T., Hsu, C., Hsu, L., Hu, D., Hu, G., Hu, H., Hu, M., Hu, Y., Hu, Z., Hua, F., Hua, Y., Huang, C., Huang, H., Huang, K., Huang, S., Huang, W., Huang, Y., Huber, T., Huebbe, P., Huh, W., Hulmi, J., Hur, G., Hurley, J., Husak, Z., Hussain, S., Hwang, J., Hwang, S., Hwang, T., Ichihara, A., Imai, Y., Imbriano, C., Inomata, M., Into, T., Iovane, V., Iovanna, J., Iozzo, R., Ip, N., Irazoqui, J., Iribarren, P., Isaka, Y., Isakovic, A., Ischiropoulos, H., Isenberg, J., Ishaq, M., Ishida, H., Ishii, I., Ishmael, J., Isidoro, C., Isobe, K., Isono, E., Issazadeh-Navikas, S., Itahana, K., Itakura, E., Ivanov, A., Iyer, A., Izquierdo, J., Izumi, Y., Izzo, V., Jäättelä, M., Jaber, N., Jackson, D., Jackson, W., Jacob, T., Jacques, T., Jagannath, C., Jain, A., Jana, N., Jang, B., Jani, A., Janji, B., Jannig, P., Jansson, P., Jean, S., Jendrach, M., Jeon, J., Jessen, N., Jeung, E., Jia, K., Jia, L., Jiang, H., Jiang, L., Jiang, T., Jiang, X., Jiang, Y., Jiménez, A., Jin, C., Jin, H., Jin, L., Jin, M., Jin, S., Jinwal, U., Jo, E., Johansen, T., Johnson, D., Johnson, G., Johnson, J., Jonasch, E., Jones, C., Joosten, L., Jordan, J., Joseph, A., Joseph, B., Joubert, A., Ju, D., Ju, J., Juan, H., Juenemann, K., Juhász, G., Jung, H., Jung, J., Jung, Y., Jungbluth, H., Justice, M., Jutten, B., Kaakoush, N., Kaarniranta, K., Kaasik, A., Kabuta, T., Kaeffer, B., Kågedal, K., Kahana, A., Kajimura, S., Kakhlon, O., Kalia, M., Kalvakolanu, D., Kamada, Y., Kambas, K., Kaminskyy, V., Kampinga, H., Kandouz, M., Kang, C., Kang, R., Kang, T., Kanki, T., Kanneganti, T., Kanno, H., Kanthasamy, A., Kantorow, M., Kaparakis-Liaskos, M., Kapuy, O., Karantza, V., Karim, M., Karmakar, P., Kaser, A., Kaushik, S., Kawula, T., Kaynar, A., Ke, P., Ke, Z., Kehrl, J., Keller, K., Kemper, J., Kenworthy, A., Kepp, O., Kern, A., Kesari, S., Kessel, D., Ketteler, R., Kettelhut, I., Khambu, B., Khan, M., Khandelwal, V., Khare, S., Kiang, J., Kiger, A., Kihara, A., Kim, A., Kim, C., Kim, D., Kim, E., Kim, H., Kim, J., Kim, K., Kim, M., Kim, P., Kim, S., Kim, Y., Kimchi, A., Kimmelman, A., Kimura, T., King, J., Kirkegaard, K., Kirkin, V., Kirshenbaum, L., Kishi, S., Kitajima, Y., Kitamoto, K., Kitaoka, Y., Kitazato, K., Kley, R., Klimecki, W., Klinkenberg, M., Klucken, J., Knævelsrud, H., Knecht, E., Knuppertz, L., Ko, J., Kobayashi, S., Koch, J., Koechlin-Ramonatxo, C., Koenig, U., Koh, Y., Köhler, K., Kohlwein, S., Koike, M., Komatsu, M., Kominami, E., Kong, D., Kong, H., Konstantakou, E., Kopp, B., Korcsmaros, T., Korhonen, L., Korolchuk, V., Koshkina, N., Kou, Y., Koukourakis, M., Koumenis, C., Kovács, A., Kovács, T., Kovacs, W., Koya, D., Kraft, C., Krainc, D., Kramer, H., Kravic-Stevovic, T., Krek, W., Kretz-Remy, C., Krick, R., Krishnamurthy, M., Kriston-Vizi, J., Kroemer, G., Kruer, M., Kruger, R., Ktistakis, N., Kuchitsu, K., Kuhn, C., Kumar, A., Kumar, D., Kumar, R., Kumar, S., Kundu, M., Kung, H., Kuno, A., Kuo, S., Kuret, J., Kurz, T., Kwok, T., Kwon, T., Kwon, Y., Kyrmizi, I., La Spada, A., Lafont, F., Lahm, T., Lakkaraju, A., Lam, T., Lamark, T., Lancel, S., Landowski, T., Lane, D., Lane, J., Lanzi, C., Lapaquette, P., Lapierre, L., Laporte, J., Laukkarinen, J., Laurie, G., Lavandero, S., Lavie, L., Lavoie, M., Law, B., Law, H., Law, K., Layfield, R., Lazo, P., Le Cam, L., Le Roch, K., Le Stunff, H., Leardkamolkarn, V., Lecuit, M., Lee, B., Lee, C., Lee, E., Lee, G., Lee, H., Lee, J., Lee, M., Lee, P., Lee, S., Lee, Y., Leeuwenburgh, C., Lefort, S., Legouis, R., Lei, J., Lei, Q., Leib, D., Leibowitz, G., Lekli, I., Lemaire, S., Lemasters, J., Lemberg, M., Lemoine, A., Leng, S., Lenz, G., Lenzi, P., Lerman, L., Lettieri Barbato, D., Leu, J., Leung, H., Levine, B., Lewis, P., Lezoualc'H, F., Li, C., Li, F., Li, J., Li, K., Li, L., Li, M., Li, Q., Li, R., Li, S., Li, W., Li, X., Li, Y., Lian, J., Liang, C., Liang, Q., Liao, Y., Liberal, J., Liberski, P., Lie, P., Lieberman, A., Lim, H., Lim, K., Lima, R., Lin, C., Lin, F., Lin, K., Lin, P., Lin, T., Lin, W., Lin, Y., Linden, R., Lindholm, D., Lindqvist, L., Lingor, P., Linkermann, A., Liotta, L., Lipinski, M., Lira, V., Lisanti, M., Liton, P., Liu, B., Liu, C., Liu, F., Liu, H., Liu, J., Liu, K., Liu, L., Liu, Q., Liu, R., Liu, S., Liu, W., Liu, X., Liu, Y., Liu, Z., Liuzzi, J., Lizard, G., Ljujic, M., Lodhi, I., Logue, S., Lokeshwar, B., Long, Y., Lonial, S., Loos, B., López-Otín, C., López-Vicario, C., Lorente, M., Lorenzi, P., Lõrincz, P., Los, M., Lotze, M., Lovat, P., Lu, B., Lu, J., Lu, Q., Lu, S., Lu, Y., Luciano, F., Luckhart, S., Lucocq, J., Ludovico, P., Lugea, A., Lukacs, N., Lum, J., Lund, A., Luo, H., Luo, J., Luo, S., Luparello, C., Lyons, T., Ma, J., Ma, Y., Ma, Z., Machado, J., Machado-Santelli, G., Macian, F., Macintosh, G., Mackeigan, J., Macleod, K., Macmicking, J., MacMillan-Crow, L., Madeo, F., Madesh, M., Madrigal-Matute, J., Maeda, A., Maeda, T., Maegawa, G., Maellaro, E., Maes, H., Magariños, M., Maiese, K., Maiti, T., Maiuri, L., Maiuri, M., Maki, C., Malli, R., Malorni, W., Maloyan, A., Mami-Chouaib, F., Man, N., Mancias, J., Mandelkow, E., Mandell, M., Manfredi, A., Manié, S., Manzoni, C., Mao, K., Mao, Z., Marambaud, 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L, Chen, Wei, Chen, Wei Jung, Chen, Wen Qiang, Chen, Wenli, Chen, Xiangmei, Chen, Yau Hung, Chen, Ye Guang, Chen, Yin, Chen, Yingyu, Chen, Yongshun, Chen, Yu Jen, Chen, Yue Qin, Chen, Yujie, Chen, Zhen, Chen, Zhong, Cheng, Alan, Cheng, Christopher Hk, Cheng, Hua, Cheong, Heesun, Cherry, Sara, Chesney, Jason, Cheung, Chun Hei Antonio, Chevet, Eric, Chi, Hsiang Cheng, Chi, Sung Gil, Chiacchiera, Fulvio, Chiang, Hui Ling, Chiarelli, Roberto, Chiariello, Mario, Chieppa, Marcello, Chin, Lih Shen, Chiong, Mario, Chiu, Gigi Nc, Cho, Dong Hyung, Cho, Ssang Goo, Cho, William C, Cho, Yong Yeon, Cho, Young Seok, Choi, Augustine Mk, Choi, Eui Ju, Choi, Eun Kyoung, Choi, Jayoung, Choi, Mary E, Choi, Seung Il, Chou, Tsui Fen, Chouaib, Salem, Choubey, Divaker, Choubey, Vinay, Chow, Kuan Chih, Chowdhury, Kamal, Chu, Charleen T, Chuang, Tsung Hsien, Chun, Taehoon, Chung, Hyewon, Chung, Taijoon, Chung, Yuen Li, Chwae, Yong Joon, Cianfanelli, Valentina, Ciarcia, Roberto, Ciechomska, Iwona A, Ciriolo, Maria Rosa, Cirone, Mara, Claerhout, Sofie, Clague, Michael J, Clària, Joan, Clarke, Peter Gh, Clarke, Robert, Clementi, Emilio, Cleyrat, Cédric, Cnop, Miriam, Coccia, Eliana M, Cocco, Tiziana, Codogno, Patrice, Coers, Jörn, Cohen, Ezra Ew, Colecchia, David, Coletto, Luisa, Coll, Núria S, Colucci Guyon, Emma, Comincini, Sergio, Condello, Maria, Cook, Katherine L, Coombs, Graham H, Cooper, Cynthia D, Cooper, J. Mark, Coppens, Isabelle, Corasaniti, Maria Tiziana, Corazzari, Marco, Corbalan, Ramon, Corcelle Termeau, Elisabeth, Cordero, Mario D, Corral Ramos, Cristina, Corti, Olga, Cossarizza, Andrea, Costelli, Paola, Costes, Safia, Cotman, Susan L, Coto Montes, Ana, Cottet, Sandra, Couve, Eduardo, Covey, Lori R, Cowart, L. 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Tony, El Deiry, Wafik S, El Khoury, Victoria, Elazar, Zvulun, Eldar Finkelman, Hagit, Elliott, Chris Jh, Emanuele, Enzo, Emmenegger, Urban, Engedal, Nikolai, Engelbrecht, Anna Mart, Engelender, Simone, Enserink, Jorrit M, Erdmann, Ralf, Erenpreisa, Jekaterina, Eri, Rajaraman, Eriksen, Jason L, Erman, Andreja, Escalante, Ricardo, Eskelinen, Eeva Liisa, Espert, Lucile, Esteban Martínez, Lorena, Evans, Thomas J, Fabri, Mario, Fabrias, Gemma, Fabrizi, Cinzia, Facchiano, Antonio, Færgeman, Nils J, Faggioni, Alberto, Fairlie, W. 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Berghe, G, Van Den Bosch, L, van den Brink, Gr, van der Goot, Fg, van der Klei, Ij, van der Laan, Lj, van Doorn, Wg, van Egmond, M, van Golen, Kl, Van Kaer, L, van Lookeren Campagne, M, Vandenabeele, P, Vandenberghe, W, Vanhorebeek, I, Varela Nieto, I, Vasconcelos, Mh, Vasko, R, Vavvas, Dg, Vega Naredo, I, Velasco, G, Velentzas, Ad, Velentzas, Pd, Vellai, T, Vellenga, E, Vendelbo, Mh, Venkatachalam, K, Ventura, N, Ventura, S, Veras, P, Verdier, M, Vertessy, Bg, Viale, A, Vidal, M, Vieira, H, Vierstra, Rd, Vigneswaran, N, Vij, N, Vila, M, Villar, M, Villar, Vh, Villarroya, J, Vindis, C, Viola, G, Viscomi, Mt, Vitale, G, Vogl, Dt, Voitsekhovskaja, Ov, von Haefen, C, von Schwarzenberg, K, Voth, De, Vouret Craviari, V, Vuori, K, Vyas, Jm, Waeber, C, Walker, Cl, Walker, Mj, Walter, J, Wan, L, Wan, X, Wang, B, Wang, C, Wang, Cy, Wang, D, Wang, F, Wang, G, Wang, Hj, Wang, H, Wang, Hg, Wang, Hd, Wang, J, Wang, M, Wang, Mq, Wang, Py, Wang, P, Wang, Rc, Wang, S, Wang, Tf, Wang, X, Wang, Xj, 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Yang, W, Yang, Wy, Yang, X, Yang, Y, Yang, Z, Yao, Mc, Yao, Pj, Yao, X, Yao, Z, Yasui, L, Ye, M, Yedvobnick, B, Yeganeh, B, Yeh, E, Yeyati, Pl, Yi, F, Yi, L, Yin, Xm, Yip, Ck, Yoo, Ym, Yoo, Yh, Yoon, Sy, Yoshida, Ki, Yoshimori, T, Young, Kh, Yu, H, Yu, Jj, Yu, Jt, Yu, J, Yu, L, Yu, Wh, Yu, Xf, Yu, Z, Yuan, J, Yuan, Zm, Yue, By, Yue, J, Yue, Z, Zacks, Dn, Zacksenhaus, E, Zaffaroni, N, Zaglia, T, Zakeri, Z, Zecchini, V, Zeng, J, Zeng, M, Zeng, Q, Zervos, A, Zhang, Dd, Zhang, F, Zhang, G, Zhang, Gc, Zhang, H, Zhang, J, Zhang, Jp, Zhang, L, Zhang, My, Zhang, X, Zhang, Xd, Zhang, Y, Zhao, M, Zhao, Wl, Zhao, X, Zhao, Yg, Zhao, Y, Zhao, Yx, Zhao, Z, Zhao, Zj, Zheng, D, Zheng, Xl, Zheng, X, Zhivotovsky, B, Zhong, Q, Zhou, Gz, Zhou, G, Zhou, H, Zhou, Sf, Zhou, Xj, Zhu, H, Zhu, Wg, Zhu, W, Zhu, Xf, Zhu, Y, Zhuang, Sm, Zhuang, X, Ziparo, E, Zois, Ce, Zoladek, T, Zong, Wx, Zorzano, A, Zughaier, Sm, AII - Amsterdam institute for Infection and Immunity, Medical Microbiology and Infection Prevention, Other departments, CCA -Cancer Center Amsterdam, Center of Experimental and Molecular Medicine, Radiotherapy, AGEM - Amsterdam Gastroenterology Endocrinology Metabolism, Medical Biochemistry, ANS - Cellular & Molecular Mechanisms, Cell Biology and Histology, Gastroenterology and Hepatology, Tytgat Institute for Liver and Intestinal Research, Daniel J Klionsky, Kotb Abdelmohsen, Akihisa Abe, Md Joynal Abedin, Hagai Abeliovich, Abraham Acevedo Arozena, Hiroaki Adachi, Christopher M Adam, Peter D Adam, Khosrow Adeli, Peter J Adhihetty, Sharon G Adler, Galila Agam, Rajesh Agarwal, Manish K Aghi, Maria Agnello, Patrizia Agostini, Patricia V Aguilar, Julio Aguirre-Ghiso, Edoardo M Airoldi, Slimane Ait-Si-Ali, Takahiko Akematsu, Emmanuel T Akporiaye, Mohamed Al-Rubeai, Guillermo M Albaiceta, Chris Albanese, Diego Albani, Matthew L Albert, Jesus Aldudo, Hana Algül, Mehrdad Alirezaei, Iraide Alloza, Alexandru Almasan, Maylin Almonte-Beceril, Emad S Alnemri, Covadonga Alonso, Nihal Altan-Bonnet, Dario C Altieri, Silvia Alvarez, Lydia Alvarez- Erviti, Sandro Alve, Giuseppina Amadoro, Atsuo Amano, Consuelo Amantini, Santiago Ambrosio, Ivano Amelio, Amal O Amer, Mohamed Amessou, Angelika Amon, Zhenyi An, Frank A Anania, Stig U Andersen, Usha P Andley, Catherine K Andreadi, Nathalie Andrieu- Abadie, Alberto Anel, David K Ann, Shailendra Anoopkumar-Dukie, Manuela Antonioli, Hiroshi Aoki, Nadezda Apostolova, Saveria Aquila, Katia Aquilano, Koichi Araki, Eli Arama, Agustin Aranda, Jun Araya, Alexandre Arcaro, Esperanza Aria, Hirokazu Arimoto, Aileen R Ariosa, Jane L Armstrong, Thierry Arnould, Ivica Arsov, Katsuhiko Asanuma, Valerie Askana, Eric Asselin, Ryuichiro Atarashi, Sally S Atherton, Julie D Atkin, Laura D Attardi, Patrick Auberger, Georg Auburger, Laure Aurelian, Riccardo Autelli, Laura Avagliano, Maria Laura Avantaggiati, Limor Avrahami, Suresh Awale, Neelam Azad, Tiziana Bachetti, Jonathan M Backer, Dong- Hun Bae, Jae-sung Bae, Ok-Nam Bae, Soo Han Bae, Eric H Baehrecke, Seung-Hoon Baek, Stephen Baghdiguian, Agnieszka Bagniewska-Zadworna, Hua Bai, Jie Bai, Xue-Yuan Bai, Yannick Bailly, Kithiganahalli Narayanaswamy Balaji, Walter Balduini, Andrea Ballabio, Rena Balzan, Rajkumar Banerjee, Gábor Bánhegyi, Haijun Bao, Benoit Barbeau, Maria D Barrachina, Esther Barreiro, Bonnie Bartel, Alberto Bartolomé, Diane C Bassham, Maria Teresa Bassi, Robert C Bast Jr, Alakananda Basu, Maria Teresa Batista, Henri Batoko, Maurizio Battino, Kyle Bauckman, Bradley L Baumgarner, K Ulrich Bayer, Rupert Beale, Jean-François Beaulieu, George R. Beck Jr, Christoph Becker, J David Beckham, Pierre-André Bédard, Patrick J Bednarski, Thomas J Begley, Christian Behl, Christian Behrend, Georg MN Behren, Kevin E Behrn, Eloy Bejarano, Amine Belaid, Francesca Belleudi, Giovanni Bénard, Guy Berchem, Daniele Bergamaschi, Matteo Bergami, Ben Berkhout, Laura Berliocchi, Amélie Bernard, Monique Bernard, Francesca Bernassola, Anne Bertolotti, Amanda S Be, Sébastien Besteiro, Saverio Bettuzzi, Savita Bhalla, Shalmoli Bhattacharyya, Sujit K Bhutia, Caroline Biagosch, Michele Wolfe Bianchi, Martine Biard-Piechaczyk, Viktor Bille, Claudia Bincoletto, Baris Bingol, Sara W Bird, Marc Bitoun, Ivana Bjedov, Craig Blackstone, Lionel Blanc, Guillermo A Blanco, Heidi Kiil Blomhoff, Emilio Boada-Romero, Stefan Böckler, Marianne Boe, Kathleen Boesze-Battaglia, Lawrence H Boise, Alessandra Bolino, Andrea Boman, Paolo Bonaldo, Matteo Bordi, Jürgen Bosch, Luis M Botana, Joelle Botti, German Bou, Marina Bouché, Marion Bouchecareilh, Marie- Josée Boucher, Michael E Boulton, Sebastien G Bouret, Patricia Boya, Michaël Boyer-Guittaut, Peter V Bozhkov, Nathan Brady, Vania MM Braga, Claudio Brancolini, Gerhard H Brau, José M Bravo-San Pedro, Lisa A Brennan, Emery H Bresnick, Patrick Brest, Dave Bridge, MarieAgnès Bringer, Marisa Brini, Glauber C Brito, Bertha Brodin, Paul S Brooke, Eric J Brown, Karen Brown, Hal E Broxmeyer, Alain Bruhat, Patricia Chakur Brum, John H Brumell, Nicola Brunetti-Pierri, Robert J Bryson-Richardson, Shilpa Buch, Alastair M Buchan, Hikmet Budak, Dmitry V Bulavin, Scott J Bultman, Geert Bultynck, Vladimir Bumbasirevic, Yan Burelle, Robert E Burke, Margit Burmeister, Peter Bütikofer, Laura Caberlotto, Ken Cadwell, Monika Cahova, Dongsheng Cai, Jingjing Cai, Qian Cai, Sara Calatayud, Nadine Camougrand, Michelangelo Campanella, Grant R Campbell, Matthew Campbell, Silvia Campello, Robin Candau, Isabella Caniggia, Lavinia Cantoni, Lizhi Cao, Allan B Caplan, Michele Caraglia, Claudio Cardinali, Sandra Morais Cardoso, Jennifer S Carew, Laura A Carleton, Cathleen R Carlin, Silvia Carloni, Sven R Carlsson, Didac Carmona-Gutierrez, Leticia AM Carneiro, Oliana Carnevali, Serena Carra, Alice Carrier, Bernadette Carroll, Caty Casa, Josefina Casa, Giuliana Cassinelli, Perrine Castet, Susana Castro-Obregon, Gabriella Cavallini, Isabella Ceccherini, Francesco Cecconi, Arthur I Cederbaum, Valentín Ceña, Simone Cenci, Claudia Cerella, Davide Cervia, Silvia Cetrullo, Hassan Chaachouay, Han-Jung Chae, Andrei S Chagin, Chee-Yin Chai, Gopal Chakrabarti, Georgios Chamilo, Edmond YW Chan, Matthew TV Chan, Dhyan Chandra, Pallavi Chandra, Chih-Peng Chang, Raymond Chuen-Chung Chang, Ta Yuan Chang, John C Chatham, Saurabh Chatterjee, Santosh Chauhan, Yongsheng Che, Michael E Cheetham, Rajkumar Cheluvappa, Chun-Jung Chen, Gang Chen, Guang-Chao Chen, Guoqiang Chen, Hongzhuan Chen, Jeff W Chen, Jian-Kang Chen, Min Chen, Mingzhou Chen, Peiwen Chen, Qi Chen, Quan Chen, Shang- Der Chen, Si Chen, Steve S-L Chen, Wei Chen, Wei-Jung Chen, Wen Qiang Chen, Wenli Chen, Xiangmei Chen, Yau-Hung Chen, Ye-Guang Chen, Yin Chen, Yingyu Chen, Yongshun Chen, Yu- Jen Chen, Yue-Qin Chen, Yujie Chen, Zhen Chen, Zhong Chen, Alan Cheng, Christopher HK Cheng, Hua Cheng, Heesun Cheong, Sara Cherry, Jason Chesney, Chun Hei Antonio Cheung, Eric Chevet, Hsiang Cheng Chi, Sung-Gil Chi, Fulvio Chiacchiera, Hui-Ling Chiang, Roberto Chiarelli, Mario Chiariello, Marcello Chieppa, Lih-Shen Chin, Mario Chiong, Gigi NC Chiu, Dong-Hyung Cho, Ssang-Goo Cho, William C Cho, Yong-Yeon Cho, Young-Seok Cho, Augustine MK Choi, Eui-Ju Choi, Eun-Kyoung Choi, Jayoung Choi, Mary E Choi, Seung-Il Choi, Tsui-Fen Chou, Salem Chouaib, Divaker Choubey, Vinay Choubey, Kuan-Chih Chow, Kamal Chowdhury, Charleen T Chu, Tsung-Hsien Chuang, Taehoon Chun, Hyewon Chung, Taijoon Chung, Yuen-Li Chung, Yong-Joon Chwae, Valentina Cianfanelli, Roberto Ciarcia, Iwona A Ciechomska, Maria Rosa Ciriolo, Mara Cirone, Sofie Claerhout, Michael J Clague, Joan Clària, Peter GH Clarke, Robert Clarke, Emilio Clementi, Cédric Cleyrat, Miriam Cnop, Eliana M Coccia, Tiziana Cocco, Patrice Codogno, Jörn Coer, Ezra EW Cohen, David Colecchia, Luisa Coletto, Núria S Coll, Emma Colucci-Guyon, Sergio Comincini, Maria Condello, Katherine L Cook, Graham H Coomb, Cynthia D Cooper, J Mark Cooper, Isabelle Coppen, Maria Tiziana Corasaniti, Marco Corazzari, Ramon Corbalan, Elisabeth Corcelle-Termeau, Mario D Cordero, Cristina Corral-Ramo, Olga Corti, Andrea Cossarizza, Paola Costelli, Safia Coste, Susan L Cotman, Ana Coto-Monte, Sandra Cottet, Eduardo Couve, Lori R Covey, L Ashley Cowart, Jeffery S Cox, Fraser P Coxon, Carolyn B Coyne, Mark S Cragg, Rolf J Craven, Tiziana Crepaldi, Jose L Crespo, Alfredo Criollo, Valeria Crippa, Maria Teresa Cruz, Ana Maria Cuervo, Jose M Cuezva, Taixing Cui, Pedro R Cutilla, Mark J Czaja, Maria F Czyzyk-Krzeska, Ruben K Dagda, Uta Dahmen, Chunsun Dai, Wenjie Dai, Yun Dai, Kevin N Dalby, Luisa Dalla Valle, Guillaume Dalmasso, Marcello D'Amelio, Markus Damme, Arlette Darfeuille-Michaud, Catherine Dargemont, Victor M Darley-Usmar, Srinivasan Dasarathy, Biplab Dasgupta, Srikanta Dash, Crispin R Da, Hazel Marie Davey, Lester M David, David Dávila, Roger J Davi, Ted M Dawson, Valina L Dawson, Paula Daza, Jackie de Belleroche, Paul de Figueiredo, Regina Celia Bressan Queiroz de Figueiredo, José de la Fuente, Luisa De Martino, Antonella De Mattei, Guido RY De Meyer, Angelo De Milito, Mauro De Santi, Wanderley de Souza, Vincenzo De Tata, Daniela De Zio, Jayanta Debnath, Reinhard Dechant, Jean-Paul Decuypere, Shane Deegan, Benjamin Dehay, Barbara Del Bello, Dominic P Del Re, Régis Delage-Mourroux, Lea MD Delbridge, Louise Deldicque, Elizabeth Delorme-Axford, Yizhen Deng, Joern Dengjel, Melanie Denizot, Paul Dent, Channing J Der, Vojo Deretic, Benoît Derrien, Eric Deutsch, Timothy P Devarenne, Rodney J Devenish, Sabrina Di Bartolomeo, Nicola Di Daniele, Fabio Di Domenico, Alessia Di Nardo, Simone Di Paola, Antonio Di Pietro, Livia Di Renzo, Aaron DiAntonio, Guillermo Díaz-Araya, Ines Díaz-Laviada, Maria T Diaz-Meco, Javier Diaz-Nido, Chad A Dickey, Robert C Dickson, Marc Diederich, Paul Digard, Ivan Dikic, Savithrama P Dinesh-Kumar, Chan Ding, Wen-Xing Ding, Zufeng Ding, Luciana Dini, Jörg HW Distler, Abhinav Diwan, Mojgan Djavaheri-Mergny, Kostyantyn Dmytruk, Renwick CJ Dobson, Volker Doetsch, Karol Dokladny, Svetlana Dokudovskaya, Massimo Donadelli, X Charlie Dong, Xiaonan Dong, Zheng Dong, Terrence M Donohue Jr, Kelly S Doran, Gabriella D'Orazi, Gerald W Dorn II, Victor Dosenko, Sami Dridi, Liat Drucker, Jie Du, Li-Lin Du, Lihuan Du, André du Toit, Priyamvada Dua, Lei Duan, Pu Duann, Vikash Kumar Dubey, Michael R Duchen, Michel A Duchosal, Helene Duez, Isabelle Dugail, Verónica I Dumit, Mara C Duncan, Elaine A Dunlop, William A Dunn Jr, Nicolas Dupont, Luc Dupui, Raúl V Durán, Thomas M Durcan, Stéphane Duvezin-Caubet, Umamaheswar Duvvuri, Vinay Eapen, Darius Ebrahimi-Fakhari, Arnaud Echard, Leopold Eckhart, Charles L Edelstein, Aimee L Edinger, Ludwig Eichinger, Tobias Eisenberg, Avital Eisenberg-Lerner, N Tony Eissa, Wafik S El-Deiry, Victoria El-Khoury, Zvulun Elazar, Hagit Eldar-Finkelman, Chris JH Elliott, Enzo Emanuele, Urban Emmenegger, Nikolai Engedal, Anna-Mart Engelbrecht, Simone Engelender, Jorrit M Enserink, Ralf Erdmann, Jekaterina Erenpreisa, Rajaraman Eri, Jason L Eriksen, Andreja Erman, Ricardo Escalante, Eeva- Liisa Eskelinen, Lucile Espert, Lorena Esteban-Martínez, Thomas J Evan, Mario Fabri, Gemma Fabria, Cinzia Fabrizi, Antonio Facchiano, Nils J Færgeman, Alberto Faggioni, W Douglas Fairlie, Chunhai Fan, Daping Fan, Jie Fan, Shengyun Fang, Manolis Fanto, Alessandro Fanzani, Thomas Farka, Mathias Faure, Francois B Favier, Howard Fearnhead, Massimo Federici, Erkang Fei, Tania C Felizardo, Hua Feng, Yibin Feng, Yuchen Feng, Thomas A Ferguson, Álvaro F Fernández, Maite G Fernandez-Barrena, Jose C Fernandez-Checa, Arsenio Fernández-López, Martin E Fernandez-Zapico, Olivier Feron, Elisabetta Ferraro, Carmen Veríssima Ferreira-Halder, Laszlo Fesu, Ralph Feuer, Fabienne C Fiesel, Eduardo C Filippi-Chiela, Giuseppe Filomeni, Gian Maria Fimia, John H Fingert, Steven Finkbeiner, Toren Finkel, Filomena Fiorito, Paul B Fisher, Marc Flajolet, Flavio Flamigni, Oliver Florey, Salvatore Florio, R Andres Floto, Marco Folini, Carlo Follo, Edward A Fon, Francesco Fornai, Franco Fortunato, Alessandro Fraldi, Rodrigo Franco, Arnaud Francoi, Aurélie Françoi, Lisa B Frankel, Iain DC Fraser, Norbert Frey, Damien G Freyssenet, Christian Frezza, Scott L Friedman, Daniel E Frigo, Dongxu Fu, José M Fuente, Juan Fueyo, Yoshio Fujitani, Yuuki Fujiwara, Mikihiro Fujiya, Mitsunori Fukuda, Simone Fulda, Carmela Fusco, Bozena Gabryel, Matthias Gaestel, Philippe Gailly, Malgorzata Gajewska, Sehamuddin Galadari, Gad Galili, Inmaculada Galindo, Maria F Galindo, Giovanna Galliciotti, Lorenzo Galluzzi, Luca Galluzzi, Vincent Galy, Noor Gammoh, Sam Gandy, Anand K Ganesan, Swamynathan Ganesan, Ian G Ganley, Monique Gannagé, Fen-Biao Gao, Feng Gao, Jian-Xin Gao, Lorena García Nannig, Eleonora García Véscovi, Marina Garcia-Macía, Carmen Garcia- Ruiz, Abhishek D Garg, Pramod Kumar Garg, Ricardo Gargini, Nils Christian Gassen, Damián Gatica, Evelina Gatti, Julie Gavard, Evripidis Gavathioti, Liang Ge, Pengfei Ge, Shengfang Ge, Po-Wu Gean, Vania Gelmetti, Armando A Genazzani, Jiefei Geng, Pascal Genschik, Lisa Gerner, Jason E Gestwicki, David A Gewirtz, Saeid Ghavami, Eric Ghigo, Debabrata Ghosh, Anna Maria Giammarioli, Francesca Giampieri, Claudia Giampietri, Alexandra Giatromanolaki, Derrick J Gibbing, Lara Gibellini, Spencer B Gibson, Vanessa Ginet, Antonio Giordano, Flaviano Giorgini, Elisa Giovannetti, Stephen E Girardin, Suzana Gispert, Sandy Giuliano, Candece L Gladson, Alvaro Glavic, Martin Gleave, Nelly Godefroy, Robert M Gogal Jr, Kuppan Gokulan, Gustavo H Goldman, Delia Goletti, Michael S Goligorsky, Aldrin V Gome, Ligia C Gome, Hernando Gomez, Candelaria Gomez-Manzano, Rubén Gómez-Sánchez, Dawit AP Gonçalve, Ebru Goncu, Qingqiu Gong, Céline Gongora, Carlos B Gonzalez, Pedro Gonzalez-Alegre, Pilar Gonzalez-Cabo, Rosa Ana González-Polo, Ing Swie Goping, Carlos Gorbea, Nikolai V Gorbunov, Daphne R Goring, Adrienne M Gorman, Sharon M Gorski, Sandro Goruppi, Shino Goto- Yamada, Cecilia Gotor, Roberta A Gottlieb, Illana Goze, Devrim Gozuacik, Yacine Graba, Martin Graef, Giovanna E Granato, Gary Dean Grant, Steven Grant, Giovanni Luca Gravina, Douglas R Green, Alexander Greenhough, Michael T Greenwood, Benedetto Grimaldi, Frédéric Gro, Charles Grose, Jean-Francois Groulx, Florian Gruber, Paolo Grumati, Tilman Grune, Jun-Lin Guan, Kun-Liang Guan, Barbara Guerra, Carlos Guillen, Kailash Gulshan, Jan Gunst, Chuanyong Guo, Lei Guo, Ming Guo, Wenjie Guo, Xu-Guang Guo, Andrea A Gust, Åsa B Gustafsson, Elaine Gutierrez, Maximiliano G Gutierrez, Ho-Shin Gwak, Albert Haa, James E Haber, Shinji Hadano, Monica Hagedorn, David R Hahn, 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L Semenza, Utpal Sen, Andreas L Serra, Ana Serrano-Puebla, Hiromi Sesaki, Takao Setoguchi, Carmine Settembre, John J Shacka, Ayesha N Shajahan-Haq, Irving M Shapiro, Shweta Sharma, Hua She, C-K James Shen, Chiung-Chyi Shen, Han-Ming Shen, Sanbing Shen, Weili Shen, Rui Sheng, Xianyong Sheng, Zu-Hang Sheng, Trevor G Shepherd, Junyan Shi, Qiang Shi, Qinghua Shi, Yuguang Shi, Shusaku Shibutani, Kenichi Shibuya, Yoshihiro Shidoji, Jeng- Jer Shieh, Chwen-Ming Shih, Yohta Shimada, Shigeomi Shimizu, Dong Wook Shin, Mari L Shinohara, Michiko Shintani, Takahiro Shintani, Tetsuo Shioi, Ken Shirabe, Ronit Shiri-Sverdlov, Orian Shirihai, Gordon C Shore, Chih-Wen Shu, Deepak Shukla, Andriy A Sibirny, Valentina Sica, Christina J Sigurdson, Einar M Sigurdsson, Puran Singh Sijwali, Beata Sikorska, Wilian A Silveira, Sandrine Silvente-Poirot, Gary A Silverman, Jan Simak, Thomas Simmet, Anna Katharina Simon, Hans-Uwe Simon, Cristiano Simone, Matias Simon, Anne Simonsen, Rajat Singh, Shivendra V Singh, Shrawan K Singh, Debasish Sinha, Sangita Sinha, Frank A Sinicrope, Agnieszka Sirko, Kapil Sirohi, Balindiwe JN Sishi, Annie Sittler, Parco M Siu, Efthimios Sivridi, Anna Skwarska, Ruth Slack, Iva Slaninová, Nikolai Slavov, Soraya S Smaili, Keiran SM Smalley, Duncan R Smith, Stefaan J Soenen, Scott A Soleimanpour, Anita Solhaug, Kumaravel Somasundaram, Jin H Son, Avinash Sonawane, Chunjuan Song, Fuyong Song, Hyun Kyu Song, Ju-Xian Song, Wei Song, Kai Y Soo, Anil K Sood, Tuck Wah Soong, Virawudh Soontornniyomkij, Maurizio Sorice, Federica Sotgia, David R Soto-Pantoja, Areechun Sotthibundhu, Maria João Sousa, Herman P Spaink, Paul N Span, Anne Spang, Janet D Spark, Peter G Speck, Stephen A Spector, Claudia D Spie, Wolfdieter Springer, Daret St Clair, Alessandra Stacchiotti, Bart Stael, Michael T Stang, Daniel T Starczynowski, Petro Starokadomskyy, Clemens Steegborn, John W Steele, Leonidas Stefani, Joan Steffan, Christine M Stellrecht, Harald Stenmark, Tomasz M Stepkowski, Stęphan T Stern, Craig Steven, Brent R Stockwell, Veronika Stoka, Zuzana Storchova, Björn Stork, Vassilis Stratoulia, Dimitrios J Stravopodi, Pavel Strnad, Anne Marie Strohecker, Anna- Lena Ström, Per Stromhaug, Jiri Stulik, Yu-Xiong Su, Zhaoliang Su, Carlos S Subauste, Srinivasa Subramaniam, Carolyn M Sue, Sang Won Suh, Xinbing Sui, Supawadee Sukseree, David Sulzer, Fang-Lin Sun, Jiaren Sun, Jun Sun, Shi-Yong Sun, Yang Sun, Yi Sun, Yingjie Sun, Vinod Sundaramoorthy, Joseph Sung, Hidekazu Suzuki, Kuninori Suzuki, Naoki Suzuki, Tadashi Suzuki, Yuichiro J Suzuki, Michele S Swanson, Charles Swanton, Karl Swärd, Ghanshyam Swarup, Sean T Sweeney, Paul W Sylvester, Zsuzsanna Szatmari, Eva Szegezdi, Peter W Szlosarek, Heinrich Taegtmeyer, Marco Tafani, Emmanuel Taillebourg, Stephen WG Tait, Krisztina Takacs-Vellai, Yoshinori Takahashi, Szabolcs Takát, Genzou Takemura, Nagio Takigawa, Nicholas J Talbot, Elena Tamagno, Jerome Tamburini, Cai-Ping Tan, Lan Tan, Mei Lan Tan, Ming Tan, Yee-Joo Tan, Keiji Tanaka, Masaki Tanaka, Daolin Tang, Dingzhong Tang, Guomei Tang, Isei Tanida, Kunikazu Tanji, Bakhos A Tannou, Jose A Tapia, Inmaculada Tasset-Cueva, Marc Tatar, Iman Tavassoly, Nektarios Tavernaraki, Allen Taylor, Graham S Taylor, Gregory A Taylor, J Paul Taylor, Mark J Taylor, Elena V Tchetina, Andrew R Tee, Fatima Teixeira-Clerc, Sucheta Telang, Tewin Tencomnao, Ba-Bie Teng, Ru-Jeng Teng, Faraj Terro, Gianluca Tettamanti, Arianne L Thei, Anne E Theron, Kelly Jean Thoma, Marcos P Thomé, Paul G Thome, Andrew Thorburn, Jeremy Thorner, Thomas Thum, Michael Thumm, Teresa LM Thurston, Ling Tian, Andreas Till, Jenny Pan-yun Ting, Vladimir I Titorenko, Lilach Toker, Stefano Toldo, Sharon A Tooze, Ivan Topisirovic, Maria Lyngaas Torgersen, Liliana Torosantucci, Alicia Torriglia, Maria Rosaria Torrisi, Cathy Tournier, Roberto Town, Vladimir Trajkovic, Leonardo H Travasso, Gemma Triola, Durga Nand Tripathi, Daniela Trisciuoglio, Rodrigo Troncoso, Ioannis P Trougako, Anita C Truttmann, Kuen-Jer Tsai, Mario P Tschan, Yi-Hsin Tseng, Takayuki Tsukuba, Allan Tsung, Andrey S Tsvetkov, Shuiping Tu, Hsing-Yu Tuan, Marco Tucci, David A Tumbarello, Boris Turk, Vito Turk, Robin FB Turner, Anders A Tveita, Suresh C Tyagi, Makoto Ubukata, Yasuo Uchiyama, Andrej Udelnow, Takashi Ueno, Midori Umekawa, Rika Umemiya-Shirafuji, Benjamin R Underwood, Christian Ungermann, Rodrigo P. Ureshino, Ryo Ushioda, Vladimir N Uversky, Néstor L Uzcátegui, Thomas Vaccari, Maria I Vaccaro, Libuše Váchová, Helin Vakifahmetoglu-Norberg, Rut Valdor, Enza Maria Valente, Francois Vallette, Angela M Valverde, Greet Van den Berghe, Ludo Van Den Bosch, Gijs R van den Brink, F Gisou van der Goot, Ida J van der Klei, Luc JW van der Laan, Wouter G van Doorn, Marjolein van Egmond, Kenneth L van Golen, Luc Van Kaer, Menno van Lookeren Campagne, Peter Vandenabeele, Wim Vandenberghe, Ilse Vanhorebeek, Isabel Varela-Nieto, M Helena Vasconcelo, Radovan Vasko, Demetrios G Vavva, Ignacio Vega- Naredo, Guillermo Velasco, Athanassios D Velentza, Panagiotis D Velentza, Tibor Vellai, Edo Vellenga, Mikkel Holm Vendelbo, Kartik Venkatachalam, Natascia Ventura, Salvador Ventura, Patrícia ST Vera, Mireille Verdier, Beata G Vertessy, Andrea Viale, Michel Vidal, Helena LA Vieira, Richard D Vierstra, Nadarajah Vigneswaran, Neeraj Vij, Miquel Vila, Margarita Villar, Victor H Villar, Joan Villarroya, Cécile Vindi, Giampietro Viola, Maria Teresa Viscomi, Giovanni Vitale, Dan T Vogl, Olga V Voitsekhovskaja, Clarissa von Haefen, Karin von Schwarzenberg, Daniel E Voth, Valérie Vouret-Craviari, Kristina Vuori, Jatin M Vya, Christian Waeber, Cheryl Lyn Walker, Mark J Walker, Jochen Walter, Lei Wan, Xiangbo Wan, Bo Wang, Caihong Wang, Chao-Yung Wang, Chengshu Wang, Chenran Wang, Chuangui Wang, Dong Wang, Fen Wang, Fuxin Wang, Guanghui Wang, Hai-jie Wang, Haichao Wang, Hong-Gang Wang, Hongmin Wang, Horng-Dar Wang, Jing Wang, Junjun Wang, Mei Wang, Mei-Qing Wang, Pei-Yu Wang, Peng Wang, Richard C Wang, Shuo Wang, Ting-Fang Wang, Xian Wang, Xiao-jia Wang, Xiao-Wei Wang, Xin Wang, Xuejun Wang, Yan Wang, Yanming Wang, Ying Wang, Ying-Jan Wang, Yipeng Wang, Yu Wang, Yu Tian Wang, Yuqing Wang, Zhi-Nong Wang, Pablo Wappner, Carl Ward, Diane McVey Ward, Gary Warne, Hirotaka Watada, Yoshihisa Watanabe, Kei Watase, Timothy E Full Terms & Conditions of access and use can be found at http://www.tandfonline.com/action/journalInformation?journalCode=kaup20 Download by: [Alma Mater Studiorum - Università di Bologna] Date: 23 September 2016, At: 06:43 Weaver, Colin D Weeke, Jiwu Wei, Thomas Weide, Conrad C Weihl, Günther Weindl, Simone Nardin Wei, Longping Wen, Xin Wen, Yunfei Wen, Benedikt Westermann, Cornelia M Weyand, Anthony R White, Eileen White, J Lindsay Whitton, Alexander J Whitworth, Joëlle Wiel, Franziska Wild, Manon E Wildenberg, Tom Wileman, Deepti Srinivas Wilkinson, Simon Wilkinson, Dieter Willbold, Chris William, Katherine William, Peter R Williamson, Konstanze F Winklhofer, Steven S Witkin, Stephanie E Wohlgemuth, Thomas Wollert, Ernst J Wolvetang, Esther Wong, G William Wong, Richard W Wong, Vincent Kam Wai Wong, Elizabeth A Woodcock, Karen L Wright, Chunlai Wu, Defeng Wu, Gen Sheng Wu, Jian Wu, Junfang Wu, Mian Wu, Min Wu, Shengzhou Wu, William KK Wu, Yaohua Wu, Zhenlong Wu, Cristina PR Xavier, Ramnik J Xavier, Gui-Xian Xia, Tian Xia, Weiliang Xia, Yong Xia, Hengyi Xiao, Jian Xiao, Shi Xiao, Wuhan Xiao, Chuan-Ming Xie, Zhiping Xie, Zhonglin Xie, Maria Xilouri, Yuyan Xiong, Chuanshan Xu, Congfeng Xu, Feng Xu, Haoxing Xu, Hongwei Xu, Jian Xu, Jianzhen Xu, Jinxian Xu, Liang Xu, Xiaolei Xu, Yangqing Xu, Ye Xu, Zhi-Xiang Xu, Ziheng Xu, Yu Xue, Takahiro Yamada, Ai Yamamoto, Koji Yamanaka, Shunhei Yamashina, Shigeko Yamashiro, Bing Yan, Bo Yan, Xianghua Yan, Zhen Yan, Yasuo Yanagi, Dun-Sheng Yang, Jin-Ming Yang, Liu Yang, Minghua Yang, Pei-Ming Yang, Peixin Yang, Qian Yang, Wannian Yang, Wei Yuan Yang, Xuesong Yang, Yi Yang, Ying Yang, Zhifen Yang, Zhihong Yang, Meng-Chao Yao, Pamela J Yao, Xiaofeng Yao, Zhenyu Yao, Zhiyuan Yao, Linda S Yasui, Mingxiang Ye, Barry Yedvobnick, Behzad Yeganeh, Elizabeth S Yeh, Patricia L Yeyati, Fan Yi, Long Yi, Xiao-Ming Yin, Calvin K Yip, Yeong-Min Yoo, Young Hyun Yoo, Seung-Yong Yoon, Ken-Ichi Yoshida, Tamotsu Yoshimori, Ken H Young, Huixin Yu, Jane J Yu, Jin-Tai Yu, Jun Yu, Li Yu, W Haung Yu, Xiao-Fang Yu, Zhengping Yu, Junying Yuan, Zhi-Min Yuan, Beatrice YJT Yue, Jianbo Yue, Zhenyu Yue, David N Zack, Eldad Zacksenhau, Nadia Zaffaroni, Tania Zaglia, Zahra Zakeri, Vincent Zecchini, Jinsheng Zeng, Min Zeng, Qi Zeng, Antonis S Zervo, Donna D Zhang, Fan Zhang, Guo Zhang, Guo-Chang Zhang, Hao Zhang, Hong Zhang, Hongbing Zhang, Jian Zhang, Jiangwei Zhang, Jianhua Zhang, Jing-pu Zhang, Li Zhang, Lin Zhang, Long Zhang, Ming-Yong Zhang, Xiangnan Zhang, Xu Dong Zhang, Yan Zhang, Yang Zhang, Yanjin Zhang, Yingmei Zhang, Yunjiao Zhang, Mei Zhao, Wei-Li Zhao, Xiaonan Zhao, Yan G Zhao, Ying Zhao, Yongchao Zhao, Yu-xia Zhao, Zhendong Zhao, Zhizhuang J Zhao, Dexian Zheng, Xi-Long Zheng, Xiaoxiang Zheng, Boris Zhivotovsky, Qing Zhong, Guang-Zhou Zhou, Guofei Zhou, Huiping Zhou, Shu-Feng Zhou, Xu-jie Zhou, Hongxin Zhu, Hua Zhu, Wei- Guo Zhu, Wenhua Zhu, Xiao-Feng Zhu, Yuhua Zhu, Shi-Mei Zhuang, Xiaohong Zhuang, Elio Ziparo, Christos E Zoi, Teresa Zoladek, Wei-Xing Zong, and Antonio Zorzano & Susu M Zughaier
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[SDV]Life Sciences [q-bio] ,autophagosome ,Review Article ,ddc:616.07 ,stress ,stre ,LC3 ,MESH: Animals ,Settore MED/49 - Scienze Tecniche Dietetiche Applicate ,Settore BIO/06 - Anatomia Comparata E Citologia ,chaperone-mediated autophagy ,ComputingMilieux_MISCELLANEOUS ,Settore BIO/11 ,Pharmacology. Therapy ,Settore BIO/13 ,standards [Biological Assay] ,autolysosome ,MESH: Autophagy*/physiology ,lysosome ,methods [Biological Assay] ,Biological Assay ,Settore BIO/17 - ISTOLOGIA ,Erratum ,Human ,Biochemistry & Molecular Biology ,Settore BIO/06 ,physiology [Autophagy] ,Chaperonemediated autophagy ,[SDV.BC]Life Sciences [q-bio]/Cellular Biology ,NO ,autophagy, guidelines, molecular biology, ultrastructure ,flux ,macroautophagy ,phagophore ,vacuole ,MESH: Biological Assay/methods ,MESH: Computer Simulation ,ddc:570 ,Autolysosome, Autophagosome, Chaperonemediated autophagy, Flux, LC3, Lysosome, Macroautophagy, Phagophore, Stress, Vacuole ,Autophagy ,Animals ,Humans ,Computer Simulation ,Settore BIO/10 ,ddc:612 ,Biology ,MESH: Humans ,Animal ,0601 Biochemistry And Cell Biology ,MESH: Biological Assay/standards ,Human medicine - Abstract
Seuls les 100 premiers auteurs dont les auteurs INRA ont été entrés dans la notice. La liste complète des auteurs et de leurs affiliations est accessible sur la publication.; International audience; In 2008 we published the first set of guidelines for standardizing research in autophagy. Since then, research on this topic has continued to accelerate, and many new scientists have entered the field. Our knowledge base and relevant new technologies have also been expanding. Accordingly, it is important to update these guidelines for monitoring autophagy in different organisms. Various reviews have described the range of assays that have been used for this purpose. Nevertheless, there continues to be confusion regarding acceptable methods to measure autophagy, especially in multicellular eukaryotes.For example, a key point that needs to be emphasized is that there is a difference between measurements that monitor the numbers or volume of autophagic elements (e.g., autophagosomes or autolysosomes) at any stage of the autophagic process versus those that measure flux through the autophagy pathway (i.e., the complete process including the amount and rate of cargo sequestered and degraded). In particular, a block in macroautophagy that results in autophagosome accumulation must be differentiated from stimuli that increase autophagic activity, defined as increased autophagy induction coupled with increased delivery to, and degradation within, lysosomes (in most higher eukaryotes and some protists such as Dictyostelium) or the vacuole (in plants and fungi). In other words, it is especially important that investigators new to the field understand that the appearance of more autophagosomes does not necessarily equate with more autophagy. In fact, in many cases, autophagosomes accumulate because of a block in trafficking to lysosomes without a concomitant change in autophagosome biogenesis, whereas an increase in autolysosomes may reflect a reduction in degradative activity. It is worth emphasizing here that lysosomal digestion is a stage of autophagy and evaluating its competence is a crucial part of the evaluation of autophagic flux, or complete autophagy.Here, we present a set of guidelines for the selection and interpretation of methods for use by investigators who aim to examine macroautophagy and related processes, as well as for reviewers who need to provide realistic and reasonable critiques of papers that are focused on these processes. These guidelines are not meant to be a formulaic set of rules, because the appropriate assays depend in part on the question being asked and the system being used. In addition, we emphasize that no individual assay is guaranteed to be the most appropriate one in every situation, and we strongly recommend the use of multiple assays to monitor autophagy. Along these lines, because of the potential for pleiotropic effects due to blocking autophagy through genetic manipulation, it is imperative to target by gene knockout or RNA interference more than one autophagy-related protein. In addition, some individual Atg proteins, or groups of proteins, are involved in other cellular pathways implying that not all Atg proteins can be used as a specific marker for an autophagic process. In these guidelines, we consider these various methods of assessing autophagy and what information can, or cannot, be obtained from them. Finally, by discussing the merits and limits of particular assays, we hope to encourage technical innovation in the field.
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- 2016
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21. RNA binding protein HuR regulates the expression of ABCA1
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Dat T. Vo, Philip J. Uren, Leigh Goedeke, Luiz O. F. Penalva, José Luis Martín-Ventura, Carlos Fernández-Hernando, Chin Sheng Lin, Cristina M. Ramírez, Julio Madrigal-Matute, Myriam Gorospe, Je-Hyun Yoon, and Kotb Abdelmohsen
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human antigen R ,THP-1 Cells ,posttranscriptional regulation ,RNA-binding protein ,QD415-436 ,Biology ,Biochemistry ,ELAV-Like Protein 1 ,Endocrinology ,polycyclic compounds ,Homeostasis ,Humans ,Gene silencing ,RNA, Messenger ,cardiovascular diseases ,Research Articles ,AU-rich element ,Regulation of gene expression ,Messenger RNA ,Apolipoprotein A-I ,nutritional and metabolic diseases ,hemic and immune systems ,Translation (biology) ,Cell Biology ,Atherosclerosis ,Molecular biology ,lipid homeostasis ,Cholesterol ,ATP Binding Cassette Transporter 1 ,Gene Expression Regulation ,ABCA1 ,biology.protein ,lipids (amino acids, peptides, and proteins) ,ATP binding cassette transporter A1 ,cholesterol efflux ,Foam Cells - Abstract
ABCA1 is a major regulator of cellular cholesterol efflux and plasma HDL biogenesis. Even though the transcriptional activation of ABCA1 is well established, the posttranscriptional regulation of ABCA1 expression is poorly understood. Here, we investigate the potential contribution of the RNA binding protein (RBP) human antigen R (HuR) on the posttranscriptional regulation of ABCA1 expression. RNA immunoprecipitation assays demonstrate a direct interaction between HuR and ABCA1 mRNA. We found that HuR binds to the 3′ untranslated region of ABCA1 and increases ABCA1 translation, while HuR silencing reduces ABCA1 expression and cholesterol efflux to ApoA1 in human hepatic (Huh-7) and monocytic (THP-1) cells. Interestingly, cellular cholesterol levels regulate the expression, intracellular localization, and interaction between HuR and ABCA1 mRNA. Finally, we found that HuR expression was significantly increased in macrophages from human atherosclerotic plaques, suggesting an important role for this RBP in controlling macrophage cholesterol metabolism in vivo. In summary, we have identified HuR as a novel posttranscriptional regulator of ABCA1 expression and cellular cholesterol homeostasis, thereby opening new avenues for increasing cholesterol efflux from atherosclerotic foam macrophages and raising circulating HDL cholesterol levels.
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- 2014
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22. Proteome-wide analysis of chaperone-mediated autophagy targeting motifs
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Simoni Tiano, Britta Will, Ana Maria Cuervo, Boris Bartholdy, Antonio Diaz, Mathieu Bourdenx, Philipp Kirchner, and Julio Madrigal-Matute
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0301 basic medicine ,Proteome ,Proteomes ,Glutamine ,Amino Acid Motifs ,Chaperone-Mediated Autophagy ,Biochemistry ,Pentapeptide repeat ,Conserved sequence ,Database and Informatics Methods ,Mice ,0302 clinical medicine ,Chaperone-mediated autophagy ,Protein sequencing ,Post-Translational Modification ,Phosphorylation ,Amino Acids ,Biology (General) ,Peptide sequence ,Conserved Sequence ,Cell Death ,biology ,Organic Compounds ,Gene Ontologies ,General Neuroscience ,Acidic Amino Acids ,Methods and Resources ,Genomics ,Chemistry ,Drosophila melanogaster ,Cell Processes ,Physical Sciences ,Amino Acid Analysis ,Cellular Structures and Organelles ,General Agricultural and Biological Sciences ,Sequence Analysis ,Bioinformatics ,QH301-705.5 ,Autophagic Cell Death ,In silico ,Saccharomyces cerevisiae ,Computational biology ,Research and Analysis Methods ,General Biochemistry, Genetics and Molecular Biology ,Evolution, Molecular ,03 medical and health sciences ,Sequence Motif Analysis ,Genetics ,Animals ,Humans ,Amino Acid Sequence ,Molecular Biology Techniques ,Molecular Biology ,Molecular Biology Assays and Analysis Techniques ,General Immunology and Microbiology ,Organic Chemistry ,Chemical Compounds ,Biology and Life Sciences ,Proteins ,Computational Biology ,Correction ,Cell Biology ,Genome Analysis ,030104 developmental biology ,Chaperone (protein) ,NIH 3T3 Cells ,biology.protein ,Lysosomes ,030217 neurology & neurosurgery - Abstract
Chaperone-mediated autophagy (CMA) contributes to the lysosomal degradation of a selective subset of proteins. Selectivity lies in the chaperone heat shock cognate 71 kDa protein (HSC70) recognizing a pentapeptide motif (KFERQ-like motif) in the protein sequence essential for subsequent targeting and degradation of CMA substrates in lysosomes. Interest in CMA is growing due to its recently identified regulatory roles in metabolism, differentiation, cell cycle, and its malfunctioning in aging and conditions such as cancer, neurodegeneration, or diabetes. Identification of the subset of the proteome amenable to CMA degradation could further expand our understanding of the pathophysiological relevance of this form of autophagy. To that effect, we have performed an in silico screen for KFERQ-like motifs across proteomes of several species. We have found that KFERQ-like motifs are more frequently located in solvent-exposed regions of proteins, and that the position of acidic and hydrophobic residues in the motif plays the most important role in motif construction. Cross-species comparison of proteomes revealed higher motif conservation in CMA-proficient species. The tools developed in this work have also allowed us to analyze the enrichment of motif-containing proteins in biological processes on an unprecedented scale and discover a previously unknown association between the type and combination of KFERQ-like motifs in proteins and their participation in specific biological processes. To facilitate further analysis by the scientific community, we have developed a free web-based resource (KFERQ finder) for direct identification of KFERQ-like motifs in any protein sequence. This resource will contribute to accelerating understanding of the physiological relevance of CMA., Cells use a sophisticated code to sort proteins that must be retained for reuse from those that need to be sent to lysosomes for degradation and recycling. These authors develop tools to identify the selective lysosomal degradation motifs and use them to start breaking this code.
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- 2019
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23. MicroRNA modulation of lipid metabolism and oxidative stress in cardiometabolic diseases
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Carlos Fernández-Hernando, Juan F. Aranda, Noemi Rotllan, and Julio Madrigal-Matute
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medicine.medical_specialty ,Biology ,medicine.disease_cause ,Biochemistry ,Article ,chemistry.chemical_compound ,Non-alcoholic Fatty Liver Disease ,Physiology (medical) ,Internal medicine ,Nonalcoholic fatty liver disease ,medicine ,Humans ,RNA, Small Interfering ,Metabolic Syndrome ,chemistry.chemical_classification ,Reactive oxygen species ,Cholesterol ,Cholesterol, HDL ,Fatty liver ,Lipid metabolism ,Cholesterol, LDL ,Atherosclerosis ,Lipid Metabolism ,medicine.disease ,Fatty Liver ,MicroRNAs ,Oxidative Stress ,Endocrinology ,Gene Expression Regulation ,chemistry ,lipids (amino acids, peptides, and proteins) ,Metabolic syndrome ,Reactive Oxygen Species ,Oxidation-Reduction ,Oxidative stress ,Signal Transduction ,Lipoprotein - Abstract
The regulation of the metabolism of cholesterol has been one of the most studied biological processes since its first isolation from gallstones in 1784. High levels of plasma low-density lipoprotein (LDL) cholesterol and reduced levels of plasma high-density lipoprotein (HDL) cholesterol are widely recognized as major risk factors of cardiovascular disease. An imbalance in the production of reactive oxygen species can oxidize LDL particles, increasing the levels of the highly proatherogenic oxidized LDL. Furthermore, under pathological scenarios, numerous molecules can function as pro-oxidants, such as iron or (high levels of) glucose. In addition to the classical mechanisms regulating lipid homeostasis, recent studies have demonstrated the important role of microRNAs (miRNAs) as regulators of lipoprotein metabolism, oxidative derivatives of lipoprotein, and redox balance. Here, we summarize recent findings in the field, highlighting the contributions of some miRNAs to lipid- and oxidative-associated pathologies. We also discuss how therapeutic intervention of miRNAs may be a promising strategy to decrease LDL, increase HDL, and ameliorate lipid- and oxidative-related disorders, including atherosclerosis, nonalcoholic fatty liver disease, and metabolic syndrome.
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- 2013
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24. Proteomic Analysis of Intraluminal Thrombus Highlights Complement Activation in Human Abdominal Aortic Aneurysms
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Elena Burillo, Melina Vega de Ceniga, Jes S. Lindholt, Luis Miguel Blanco-Colio, Juan Antonio López, Roxana Martinez-Pinna, Jean-Baptiste Michel, José Luis Martín-Ventura, Margarita Esteban-Salan, Jesús Egido, Enrique Calvo, Olivier Meilhac, Carlos Pastor-Vargas, Carlos Tarin, Julio Madrigal-Matute, European Commission, Ministerio de Ciencia e Innovación (España), Ministerio de Sanidad y Consumo (España), Instituto de Salud Carlos III, Fundación ProCNIC, and Fundación Lilly
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Male ,Proteomics ,Pathology ,medicine.medical_specialty ,Neutrophils ,Inflammation ,macromolecular substances ,030204 cardiovascular system & hematology ,Biology ,environment and public health ,Polymorphism, Single Nucleotide ,03 medical and health sciences ,0302 clinical medicine ,Risk Factors ,Tandem Mass Spectrometry ,Aortic aneurysm, abdominal ,medicine ,Extracellular ,Humans ,cardiovascular diseases ,Thrombus ,Complement system proteins ,Aged ,Autoantibodies ,030304 developmental biology ,Aged, 80 and over ,0303 health sciences ,Chemotaxis ,Autoantibody ,Thrombosis ,Complement C3 ,Middle Aged ,Complement C9 ,medicine.disease ,Abdominal aortic aneurysm ,Complement system ,enzymes and coenzymes (carbohydrates) ,Culture Media, Conditioned ,cardiovascular system ,Female ,medicine.symptom ,Reactive Oxygen Species ,Cardiology and Cardiovascular Medicine ,Aortic Aneurysm, Abdominal ,Chromatography, Liquid - Abstract
OBJECTIVE: To identify proteins related to intraluminal thrombus biological activities that could help to find novel pathological mechanisms and therapeutic targets for human abdominal aortic aneurysm (AAA). APPROACH AND RESULTS: Tissue-conditioned media from patients with AAA were analyzed by a mass spectrometry-based strategy using liquid chromatography coupled to tandem mass spectrometry. Global pathway analysis by Ingenuity software highlighted the presence of several circulating proteins, among them were proteins from the complement system. Complement C3 concentration and activation were assessed in plasma from AAA patients (small AAA, AAA diameter=3-5 cm and large AAA, AAA diameter >5 cm), showing decreased C3 levels and activation in large AAA patients. No association of a combination of single-nucleotide polymorphisms in complement genes between large and small AAA patients was observed. Intense extracellular C3 inmunostaining, along with C9, was observed in AAA thrombus. Analysis of C3 in AAA tissue homogenates and tissue-conditioned media showed increased levels of C3 in AAA thrombus, as well as proteolytic fragments (C3a/C3c/C3dg), suggesting its local deposition and activation. Finally, the functional role of local complement activation in polymorphonuclear (PMN) cell activation was tested, showing that C3 blockade by anti-C3 antibody was able to decrease thrombus-induced neutrophil chemotaxis and reactive oxygen species production. CONCLUSIONS: A decrease of systemic C3 concentration and activity in the later stages of AAA associated with local complement retention, consumption, and proteolysis in the thrombus could induce PMN chemotaxis and activation, playing a detrimental role in AAA progression. The article has been supported by the European Community, Fighting Aneurysmal Disease project (FP-7, HEALTH F2-2008–200647), the Spanish MICIN (SAF2010/21852), Ministerio de Sanidad y Consumo, Instituto de Salud Carlos III, Red RIC (RD12/0042/00038), and biobancos (RD09/0076/00101), Fundación Lilly and Fundacion Pro Centro Nacional de Investigaciones. Sí
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- 2013
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25. ANGPTL4 deficiency in haematopoietic cells promotes monocyte expansion and atherosclerosis progression
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Shun He, Carlos Fernández-Hernando, José Luis Martín-Ventura, Cristina M. Ramírez, Filip K. Swirski, Nikhil Warrier, Benjamin G. Chousterman, Elisa Araldi, Binod Aryal, Yajaira Suárez, Amarylis C. B. A. Wanschel, Noemi Rotllan, Julio Madrigal-Matute, and Ashley M. Fenn
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Male ,0301 basic medicine ,Myeloid ,Cell Survival ,Leukocytosis ,Science ,CD36 ,Population ,General Physics and Astronomy ,Apoptosis ,Models, Biological ,Monocytes ,Article ,General Biochemistry, Genetics and Molecular Biology ,Mice ,03 medical and health sciences ,medicine ,Angiopoietin-Like Protein 4 ,Animals ,Humans ,Macrophage ,Progenitor cell ,education ,Myeloid Progenitor Cells ,Bone Marrow Transplantation ,Cell Proliferation ,Foam cell ,Inflammation ,education.field_of_study ,Multidisciplinary ,biology ,Macrophages ,Monocyte ,General Chemistry ,Atherosclerosis ,Hematopoietic Stem Cells ,Plaque, Atherosclerotic ,3. Good health ,Mice, Inbred C57BL ,Haematopoiesis ,030104 developmental biology ,medicine.anatomical_structure ,Immunology ,Disease Progression ,biology.protein ,Cancer research ,Foam Cells - Abstract
Lipid accumulation in macrophages has profound effects on macrophage gene expression and contributes to the development of atherosclerosis. Here, we report that angiopoietin-like protein 4 (ANGPTL4) is the most highly upregulated gene in foamy macrophages and it's absence in haematopoietic cells results in larger atherosclerotic plaques, characterized by bigger necrotic core areas and increased macrophage apoptosis. Furthermore, hyperlipidemic mice deficient in haematopoietic ANGPTL4 have higher blood leukocyte counts, which is associated with an increase in the common myeloid progenitor (CMP) population. ANGPTL4-deficient CMPs have higher lipid raft content, are more proliferative and less apoptotic compared with the wild-type (WT) CMPs. Finally, we observe that ANGPTL4 deficiency in macrophages promotes foam cell formation by enhancing CD36 expression and reducing ABCA1 localization in the cell surface. Altogether, these findings demonstrate that haematopoietic ANGPTL4 deficiency increases atherogenesis through regulating myeloid progenitor cell expansion and differentiation, foam cell formation and vascular inflammation., Angiopoietin-like 4 protein (ANGPTL4) is a regulator of lipoprotein metabolism whose role in atherosclerosis has been controversial. Here the authors show that ANGPTL4 deficiency in haematopoietic cells increases atherogenesis by promoting myeloid progenitor cell expansion and differentiation, foam cell formation and vascular inflammation.
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- 2016
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26. Effects of Sex, Strain, and Energy Intake on Hallmarks of Aging in Mice
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Ahmed Ali, Miguel Calvo-Rubio, R. Michael Anson, T. Mark Beasley, Vincent Guiterrez, John Dawson, Vilhelm A. Bohr, Pinchas Cohen, Devin Wahl, Dan L. Longo, Ana Maria Cuervo, David W. Frederick, Rafael de Cabo, M. I. Burón, Yongqing Zhang, Joseph A. Baur, Donald K. Ingram, Kevin J. Pearson, James R. Mitchell, José A. González-Reyes, Evandro Fei Fang, José M. Villalba, Christopher Hine, Julio Madrigal-Matute, Kevin G. Becker, Morten Scheibye-Knudsen, Gene B. Hubbard, Yuji Ikeno, Marta Gonzalez-Freire, Michel Bernier, Sarah J. Mitchell, Frank Madeo, Lukas Habering, David B. Allison, Susmita Kaushik, Junxiang Wan, Theresa M. Ward, Josephine M. Egan, Bindi Patel, Miguel A. Aon, Sonia Cortassa, Huan Cai, Plácido Navas, Luigi Ferrucci, David A. Sinclair, Hector H. Palacios, Filomena Broeskamp, Ministerio de Economía y Competitividad (España), Consejo Superior de Investigaciones Científicas (España), National Institutes of Health (US), American Diabetes Association, Research Foundation - Flanders, Federal Ministry of Education and Research (Germany), and Universidad de Córdoba (España)
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0301 basic medicine ,Male ,medicine.medical_specialty ,Aging ,Proteasome Endopeptidase Complex ,Physiology ,Calorie restriction ,Longevity ,Context (language use) ,Mice, Inbred Strains ,Biology ,Carbohydrate metabolism ,Mitochondrion ,Article ,03 medical and health sciences ,Islets of Langerhans ,Mice ,Internal medicine ,medicine ,Autophagy ,Animals ,Cluster Analysis ,Homeostasis ,Metabolomics ,Hydrogen Sulfide ,Molecular Biology ,Caloric Restriction ,Sex Characteristics ,Ubiquitin ,Gene Expression Profiling ,Cell Biology ,Mitochondria ,030104 developmental biology ,Endocrinology ,Proteostasis ,Glucose ,Phenotype ,Gene Expression Regulation ,Liver ,Immunology ,Metabolome ,Female ,Energy Intake ,Biomarkers ,Sex characteristics - Abstract
Author manuscript; available in PMC 2017 June 14.-- et al., Calorie restriction (CR) is the most robust non-genetic intervention to delay aging. However, there are a number of emerging experimental variables that alter CR responses. We investigated the role of sex, strain, and level of CR on health and survival in mice. CR did not always correlate with lifespan extension, although it consistently improved health across strains and sexes. Transcriptional and metabolomics changes driven by CR in liver indicated anaplerotic filling of the Krebs cycle together with fatty acid fueling of mitochondria. CR prevented age-associated decline in the liver proteostasis network while increasing mitochondrial number, preserving mitochondrial ultrastructure and function with age. Abrogation of mitochondrial function negated life-prolonging effects of CR in yeast and worms. Our data illustrate the complexity of CR in the context of aging, with a clear separation of outcomes related to health and survival, highlighting complexities of translation of CR into human interventions., This work was supported in part by the Intramural Research Program of the National Institute on Aging, NIH, and by NIH grants R01 AG043483 and R01 DK098656 (J.A.B.), NIH grant AG031782 (A.M.C.), the Proteostasis of Aging Core AG038072 (A.M.C.). J.M.M. was supported by a postdoctoral fellowship from the American Diabetes Association, grant 1-15-MI-03. P.C. was supported by NIH grants (1P01AG034906, 1R01GM090311, 1R01ES 020812). F.M. is grateful to the FWF for grants LIPOTOX, I1000, P 27893, P 29203 and P24381-B20 and the BMWFW for grants “Unconventional research” and «Flysleep (80.109/0001 -WF/V/3b/2015). JMV was supported by the Spanish Ministerio de Economía y Competitividad (grants BFU2011-23578 and BFU2015-64630-R). The authors thank the personnel from the Servicio Centralizado de Apoyo a la Investigación (SCAI; University of Córdoba) for technical support.
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- 2016
27. Erratum
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Heinzen, Xiangmei Chen, Nihal Altan-Bonnet, Sung Sik Lee, Hai Jie Wang, Catherine Dargemont, Jie Du, Sofie Claerhout, Edmond Chan, Yi Sun, Xiangbo Wan, Paul Lingor, Shilpa Buch, Gerald M. McInerney, Zhenlong Wu, Guo Chang Zhang, Iain A. McNeish, Suresh Awale, Mark P. Mattson, Srinivasa Subramaniam, Wuhan Xiao, Katsuhiko Mikoshiba, Giancarlo Parenti, Bruno Miguel Neves, Benjamin Dehay, Fatima Teixeira-Clerc, Patricia Huebbe, Calvin K. Yip, Ryan J. Schulze, Pallabi Sarkar, Vladimir I. Titorenko, Johanna Laukkarinen, Martin E. Gleave, Veronika Stoka, Pascal Genschik, Karen Brown, Zhaoliang Su, Walter Malorni, Arlette Darfeuille-Michaud, Vincent C. O. Njar, Jeffrey E. Pessin, Thomas Wileman, Alexander J. Whitworth, Stefano Santaguida, Gustavo A. Nader, Gláucia Maria Machado-Santelli, Marie-Josée Hébert, Skye C. McIver, Scott A. Soleimanpour, Jia-Hong Lu, Fei Liu, Yu Wang, Elisa Motori, Chad A. 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McKenna, Mila Ljujic, Hirotaka Watada, Harry Ischiropoulos, Shile Huang, Udo Hasler, Ke Li, Josefina Casas, Ken-ichi Isobe, Min Li, Muriel Priault, Vincenzo De Tata, Monique Gannagé, Sakineh Kazemi Noureini, Isao Ishii, Sasanka Ramanadham, Valérie Pierrefite-Carle, Chengyu Liang, Louise Deldicque, Gabriella Cavallini, Afshin Samali, Angelika Amon, Kah-Leong Lim, Lavinia Cantoni, Demetrios G. Vavvas, James E. Haber, Alireza R. Rezaie, Regina Celia Bressan Queiroz de Figueiredo, Cynthia D. Cooper, Masaaki Komatsu, Silvia Alvarez, Gemma Triola, Dong-Yun Ouyang, Razaul Karim, Kostyantyn V. Dmytruk, Bassam Janji, Peter Bütikofer, Indira U. Mysorekar, Hana Popelka, E. Marion Schneider, Carlos Guillén, Gaël Roué, Seung-Hoon Baek, Patrick Auberger, Jun Araya, Sandra M. Cardoso, Gu He, Eduardo C. Filippi-Chiela, Patrick A. Lewis, Wei-Pang Huang, Eric Reits, Cécile Vindis, Trond Lamark, Mehrdad Alirezaei, Takao Setoguchi, Alberto Bartolomé, Chih Peng Chang, Andriy A. Sibirny, Mauro Piacentini, Jing Wang, Kuninori Suzuki, Ludo Van Den Bosch, Kevin N. Dalby, Keiran S.M. Smalley, David K. Ann, Luis F. Moita, Anthony Sanchez, Chin Hsu, Guillermo M. Albaiceta, Vassilis Stratoulias, Attila L. Kovács, Charleen T. Chu, Tewin Tencomnao, Audrey H. Poon, Steve Lancel, José C. Fernández-Checa, Hannah Rabinowich, Heinz D. Osiewacz, Sami Dridi, Kate E. Keller, Thorsten Hoppe, Crispin R. Dass, Jekaterina Erenpreisa, Akira Matsuura, Donna D. Zhang, Ying Zhao, Luisa Coletto, Roy Parker, Georg M. N. Behrens, Alessia Di Nardo, Mian Wu, Alberto Jiménez, Magdalena Rost-Roszkowska, Christopher J. H. Elliott, Pamela J. Yao, Damián Gatica, Rafael Linden, Helena L. A. Vieira, Anand K. Ganesan, Wim Martinet, Frank Madeo, Juliann G. Kiang, Helmut Kramer, Lorrie A. Kirshenbaum, Salvador Ventura, Clemens Steegborn, Zahra Zakeri, Marco Antonio Meraz-Ríos, Masaki Ohmuraya, Michael A. Riehle, Congcong He, Federica Sotgia, Shi-Mei Zhuang, Paul Dent, Jürgen Bosch, Xuejun Wang, Kuan-Chih Chow, Carlos Gorbea, Lisa Gerner, Yuzuru Imai, Jan Gunst, Duncan R. Smith, María Esther Pérez-Pérez, N. Tony Eissa, Michel Roberge, Carmen García-Ruiz, Irfan J. Lodhi, Hongjiao Ouyang, Mustapha Kandouz, Alessio Papini, Jun Sun, Takanobu Otomo, David H. Perlmutter, Jae-Sung Kim, Feng Gao, Åsa B. Gustafsson, Paul M. Salvaterra, Michael Klinkenberg, Or Kakhlon, Abhinav Diwan, Takahiro Shintani, Paola Matarrese, Marc D. Meneghini, Jinsheng Zeng, Xu-jie Zhou, Linda S. Yasui, Rui Sheng, Shiqian Huang, Elizabeth Delorme-Axford, Amélie Bernard, Kevin M. Ryan, Cecília M. P. Rodrigues, Jonathan M. Backer, Harald Stenmark, Hiroaki Adachi, Koichi Sakakura, Fatima Mechta-Grigoriou, Zhi Nong Wang, Ramesh Natarajan, Tian Xia, Marco Folini, Robert A. Screaton, Jane J. Yu, Xian Wang, Gerhard H. Braus, Min Wu, John A. Hanover, Anuj Kumar, Charbel Moussa, Shailendra Anoopkumar-Dukie, Edward A. 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De Meyer, Alice Carrier, Yipeng Wang, Serena Montagnaro, Nadeem O. Kaakoush, José de la Fuente, Devrim Gozuacik, Edward D. Plowey, Alastair M. Buchan, John C. Chatham, Daniel J. Klionsky, Cecilia Gotor, Isabelle Hamer, Katarzyna Mnich, Paola Rusmini, Chengshu Wang, Per Nilsson, Lorena Esteban-Martínez, Raúl V. Durán, Dieter Willbold, Hye Won Chung, Janet D. Sparks, John M. Lucocq, Blake B. Rasmussen, Takeshi Matsuzawa, Hagai Abeliovich, Wiep Scheper, Sung Joon Lee, Jennifer S. Carew, Serena Carra, Michael J. Morgan, Nikolai Slavov, Guy Berchem, Tiziana Cocco, Simone Engelender, Jianbo Yue, Yujie Chen, Mario Fabri, Maria F. Czyzyk-Krzeska, Hua Niu, Roger J. Davis, Peter J. Adhihetty, Kishore B.S. Pasumarthi, Jongsook Kim Kemper, Sharon A. Tooze, Antonio Zorzano, Jin Cheon Kim, Jian Xu, Andreas Meryk, Kristina Vuori, Jongdae Lee, Patrizia Agostinis, Diego Ruano, Wim Vandenberghe, Julia I-Ju Leu, Céline Gongora, Bernadette Carroll, Vinoth Kumar Megraj Khandelwal, Bo Lu, Marja Jäättelä, Lorenzo Galluzzi, Ioannis P. Trougakos, Tatsuya Maeda, Marie-Agnès Bringer, Mario Chiong, Hans-Uwe Simon, Lance A. Liotta, Ruth S. Slack, Ina Oehme, Umamaheswar Duvvuri, Shaun Martin, Augustine M.K. Choi, Michel Vidal, Ying Wang, Isis do Carmo Kettelhut, Mojgan Djavaheri-Mergny, Jörn Coers, Massimo Donadelli, Jesus Aldudo, Miyuki Sato, Jianxun Liu, Jörg Höhfeld, Luc Van Kaer, Andrei I. Ivanov, Dohun Pyeon, José M. Bravo-San-Pedro, Jianxin Peng, Xiaoyan Jiang, Dimitri Krainc, Yangqing Xu, Arnaud François, P. Robin Hiesinger, Sagar Lonial, William C. Cho, Caty Casas, Betty Yuen Kwan Law, Hongbing Zhang, Tor Erik Rusten, Erwin Knecht, Honglin Luo, Shi Xiao, Hiromi Sesaki, Enza Maria Valente, Verónica Pérez de la Cruz, Marta M. Lipinski, David A. Hood, Shi-Yong Sun, Luiz Carlos Carvalho Navegantes, Joynal Abedin, Shino Goto-Yamada, Gustavo Maegawa, Takehiko Matsushita, Vitor A. Lira, Clara I. Rodríguez, Ekihiro Seki, Qiang Li, Karin Öllinger, Ted M. Dawson, Ssang-Goo Cho, Wan-Wan Lin, Pramod Kumar Garg, Jeffrey Robbins, Peter R. Williamson, Michael Sacher, Carlo Follo, Bulent Ozpolat, Xiao Jia Wang, Na Man, Hua Cheng, Bing Yan, Tsung-Hsien Chuang, Paul B. Fisher, Rajat Singh, Edward A. Ratovitski, Katsuhiko Kitamoto, Jung Jin Hwang, Shinji Hadano, Che Hsin Lee, Shuo Wang, Einar M. Sigurdsson, Camille Martinand-Mari, Agnieszka Sirko, Katherine R. Parzych, Etienne Morel, Yasushi Kitaoka, Hassan Chaachouay, Patricia Chakur Brum, Dexin Kong, Jerome Tamburini, Kuppan Gokulan, Stefan Olsson, Bilon Khambu, Lea M.D. Delbridge, Daniel P. Orban, David A. Gewirtz, Zhonglin Xie, Joe Quadrilatero, Kunikazu Tanji, Simin Mohseni, Gábor Bánhegyi, Jin Ming Yang, Jinxian Xu, Carmen Veríssima Ferreira-Halder, Addanki P. Kumar, Deok Ryong Kim, Jianjie Ma, Sang Won Suh, Guido Kroemer, Klára Megyeri, Michael N. Sack, Heinrich Taegtmeyer, Gilles Pagès, Gabriella Marfe, Gregg L. Semenza, Karine G. Le Roch, Marisa Brini, Marina Bouché, Oliver Kepp, Vinay V. Eapen, J. David Beckham, Stephan T. Stern, Xudong Zhang, Marcello Pinti, Xiangnan Zhang, Jae Keun Lee, Ana Coto-Montes, Assaf Rudich, Laura D. Attardi, Debabrata Ghosh, Philip Rosenstiel, Sébastien Besteiro, Maria Rosa Sarrias, R. Andres Floto, Xiao Ming Yin, Nicholas W. Lukacs, Hermann Pavenstädt, Matias Simons, Hitoshi Nakatogawa, Sandro Alves, Krisztina Takács-Vellai, Masato Koike, Debasish Sinha, Shoji Notomi, Faraj Terro, Maria Carmela Roccheri, Santiago Ambrosio, K. Ulrich Bayer, Yumin Li, Terje Johansen, Christian Kuhn, Yee Shin Lin, David C. Rubinsztein, Ziwei Qu, Ronit Shiri-Sverdlov, Emmanuel T. Akporiaye, Galila Agam, Hui Ling Chiang, Seung-Jae Lee, Yu Xue, Francesca Giampieri, Markus Damme, Tassula Proikas-Cezanne, Tianwei Lin, Marc Kantorow, Guang-Chao Chen, Qiangrong Liang, Claudia Manzoni, Joan S. Steffan, Emilio Boada-Romero, Damien Freyssenet, Sepp D. Kohlwein, Maria D. Barrachina, Yulin Liao, Jiankang Chen, Erika Isono, Hugo Seca, Mei Wang, Taras Y. Nazarko, Yannick Bailly, Nadya V. Koshkina, Tapas K. Maiti, Bärbel Rohrer, Karin Nowikovsky, James H. Hurley, Gerald W. Dorn, Nils C. Gassen, Kazuhiro Nagata, Eiki Kominami, A. Ivana Scovassi, Ana Maria Cuervo, Adi Kimchi, Minghua Yang, Sylviane Muller, Life Sciences Institute and Department of Molecular, Cellular, and Developmental Biology and Biological Chemistry, University of Michigan [Ann Arbor], University of Michigan System-University of Michigan System, Defense in Plant-Pathogen Interactions [Nagoya, Japan], Nagoya University-Graduate School of Bioagricultural Sciences [Nagoya, Japan], Facultad de Quimica [Santiago], Pontificia Universidad Católica de Chile (UC), Institute of Cancer Sciences [Glasgow, UK] (CR-UK Beatson Institute), University of Glasgow, Cell Death Research & Therapy (CDRT) Lab, Université Catholique de Louvain, Harvard University Statistics Department, Harvard University [Cambridge], Centre épigénétique et destin cellulaire (EDC (UMR_7216)), Université Paris Diderot - Paris 7 (UPD7)-Centre National de la Recherche Scientifique (CNRS), Conway Institute of Biomolecular and Biomedical Research and School of Chemical and Bioprocess Engineering, University College Dublin [Dublin] (UCD), Immunobiologie des Cellules dendritiques, Institut Pasteur [Paris]-Institut National de la Santé et de la Recherche Médicale (INSERM), Department of Biochemistry and Molecular Biology, Thomas Jefferson University-Sidney Kimmel Cancer Center, Jefferson (Philadelphia University + Thomas Jefferson University)-Jefferson (Philadelphia University + Thomas Jefferson University), Centro de Estudios Farmacológicos y Botánicos [Buenos Aires] (CEFYBO), Consejo Nacional de Investigaciones Científicas y Técnicas [Buenos Aires] (CONICET)-Facultad de Medicina [Buenos Aires], Universidad de Buenos Aires [Buenos Aires] (UBA)-Universidad de Buenos Aires [Buenos Aires] (UBA), Thérapie génique, Génomique et Epigénomique (U 1169), Université Paris-Saclay-Institut National de la Santé et de la Recherche Médicale (INSERM)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Sud - Paris 11 (UP11), Department of Experimental Medicine and Public Health, University of Camerino, MRC Toxicology Unit, University of Leicester, Génomique Fonctionnelle des Tumeurs Solides (U1162), Université Paris 13 (UP13)-Université Paris Diderot - Paris 7 (UPD7)-Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM), Institut de médecine moléculaire de Rangueil (I2MR), Université Toulouse III - Paul Sabatier (UT3), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-IFR150-Institut National de la Santé et de la Recherche Médicale (INSERM), Departamento de Bioquímica y Biología Molecular y Celular, University of Zaragoza - Universidad de Zaragoza [Zaragoza], Department of Pharmaco-Biology, Università della Calabria [Arcavacata di Rende] (Unical), Department of Molecular Genetics [Rehovot, Israël], Weizmann Institute of Science, Fondation Universitaire Notre Dame de la Paix (FUNDP), Facultés Universitaires Notre-Dame de la Paix, Département Advanced Research And Techniques For Multidimensional Imaging Systems (ARTEMIS), Institut Mines-Télécom [Paris] (IMT)-Télécom SudParis (TSP), USC Neuromuscular Center, Department of Neurology, University of Southern California (USC), Centre méditérannéen de médecine moléculaire (C3M), Université Nice Sophia Antipolis (... - 2019) (UNS), Université Côte d'Azur (UCA)-Université Côte d'Azur (UCA)-Institut National de la Santé et de la Recherche Médicale (INSERM), Giannina Gaslini Institute, Department of Molecular Pharmacology, Albert Einstein College of Medicine, Department of Cancer Biology, University of Massachusetts Medical School [Worcester] (UMASS), University of Massachusetts System (UMASS)-University of Massachusetts System (UMASS), Institut des Sciences de l'Evolution de Montpellier (UMR ISEM), Centre de Coopération Internationale en Recherche Agronomique pour le Développement (Cirad)-École pratique des hautes études (EPHE)-Université de Montpellier (UM)-Institut de recherche pour le développement [IRD] : UR226-Centre National de la Recherche Scientifique (CNRS), Inner Mongolia Agricultural University (IMAU), Franche-Comté Électronique Mécanique, Thermique et Optique - Sciences et Technologies (UMR 6174) (FEMTO-ST), Université de Franche-Comté (UFC)-Centre National de la Recherche Scientifique (CNRS)-Ecole Nationale Supérieure de Mécanique et des Microtechniques (ENSMM)-Université de Technologie de Belfort-Montbeliard (UTBM), Indian Institute of Science [Bangalore] (IISc Bangalore), Politecnico di Milano [Milan] (POLIMI), Département des Sciences Biologiques [Montréal], Université du Québec à Montréal (UQAM), Laboratory of Molecular Biology, Scientific Institute E. Medea, Université Catholique de Louvain (UCL), Univ Ancona, Politecn Marche, University of Toronto, Munich Cluster for systems neurology [Munich] (SyNergy), Technische Universität München [München] (TUM)-Ludwig-Maximilians-Universität München (LMU), Institut de Recherche sur le Cancer et le Vieillissement (IRCAN), Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Nice Sophia Antipolis (... - 2019) (UNS), Université Côte d'Azur (UCA)-Université Côte d'Azur (UCA), Department of Clinical and Molecular Medicine, Università degli Studi di Roma 'La Sapienza' [Rome]-Réseau International des Instituts Pasteur (RIIP)-Institut Pasteur, Fondation Cenci Bolognetti - Istituto Pasteur Italia, Fondazione Cenci Bolognetti, Réseau International des Instituts Pasteur (RIIP), Physiopathologie du système nerveux central - Institut François Magendie, Université Bordeaux Segalen - Bordeaux 2-IFR8-Institut National de la Santé et de la Recherche Médicale (INSERM), Laboratoire d'Hémato-Cancérologie Expérimentale, CRP-Santé, Dpt of Neuroscience and Brain Technologies [Genova], NeuroEngineering & bio-arTificial Synergic SystemS Laboratory [Genova] (NetS3 Lab), Istituto Italiano di Tecnologia (IIT)-Istituto Italiano di Tecnologia (IIT), Center for Infection and Immunity Amsterdam (CINIMA), Laboratoire de biogenèse membranaire (LBM), Université Bordeaux Segalen - Bordeaux 2-Centre National de la Recherche Scientifique (CNRS), Centre de résonance magnétique biologique et médicale (CRMBM), Aix Marseille Université (AMU)-Assistance Publique - Hôpitaux de Marseille (APHM)-Centre National de la Recherche Scientifique (CNRS), Régulation de l'expression génétique (REG), Département de Biologie - ENS Paris, École normale supérieure - Paris (ENS Paris)-École normale supérieure - Paris (ENS Paris)-Centre National de la Recherche Scientifique (CNRS), Dynamique des interactions membranaires normales et pathologiques (DIMNP), Université Montpellier 1 (UM1)-Université Montpellier 2 - Sciences et Techniques (UM2)-Université de Montpellier (UM)-Centre National de la Recherche Scientifique (CNRS), Institut de Biologie Intégrative de la Cellule (I2BC), Université Paris-Sud - Paris 11 (UP11)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Centre National de la Recherche Scientifique (CNRS)-Université Paris-Saclay, Institut de Recherche en Infectiologie de Montpellier (IRIM), Université de Montpellier (UM)-Centre National de la Recherche Scientifique (CNRS), Department of Microbiology and Immunology, Stanford University School of Medicine [CA, USA], Institut de Myologie, Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Assistance publique - Hôpitaux de Paris (AP-HP) (APHP)-Association française contre les myopathies (AFM-Téléthon)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS), Department of Dermatology, Brigham and Women's Hospital [Boston], San Raffaele Scientific Institute, Milan, Italy, Laboratory of Molecular Neuroembryology, University of Rome 'Tor Vergeta'-Clinical and Behavioral Neurology - Neuroscienze e riabilitazione, IRCCS Fondazione Santa Lucia [Roma]-Dulbecco Telethon Institute, Department of Pharmacology, Universidade de Santiago de Compostela, Glycobiologie et signalisation cellulaire, Université Paris-Sud - Paris 11 (UP11)-Institut National de la Santé et de la Recherche Médicale (INSERM), Complexo Hospitalario Universitario A Coruña, Mécanismes moléculaires de l'angiogénèse, Université Bordeaux Segalen - Bordeaux 2-Institut National de la Santé et de la Recherche Médicale (INSERM), University of Florida [Gainesville], Centre de Recherche Jean-Pierre AUBERT Neurosciences et Cancer (JPArc - U1172 Inserm), Université Lille Nord de France (COMUE)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre Hospitalier Régional Universitaire [Lille] (CHRU Lille)-Université Lille 2 - Faculté de Médecine, Centro de Investigaciones Biológicas (CSIC), Consejo Superior de Investigaciones Científicas [Spain] (CSIC), Interactions hôte-greffon-tumeur, ingénierie cellulaire et génique - UFC (UMR INSERM 1098) (HOTE GREFFON), Université de Franche-Comté (UFC)-Etablissement français du sang [Bourgogne-France-Comté] (EFS [Bourgogne-France-Comté])-Institut National de la Santé et de la Recherche Médicale (INSERM), Centre de Recherche des Cordeliers (CRC (UMR_S_1138 / U1138)), École pratique des hautes études (EPHE)-Université Paris Diderot - Paris 7 (UPD7)-Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Sorbonne Université (SU), Infection bactérienne, inflammation, et carcinogenèse digestive, Université Côte d'Azur (UCA)-Université Côte d'Azur (UCA)-IFR50-Institut National de la Santé et de la Recherche Médicale (INSERM), Centre des Sciences du Goût et de l'Alimentation [Dijon] (CSGA), Institut National de la Recherche Agronomique (INRA)-Université de Bourgogne (UB)-AgroSup Dijon - Institut National Supérieur des Sciences Agronomiques, de l'Alimentation et de l'Environnement-Centre National de la Recherche Scientifique (CNRS), Universita degli Studi di Padova, University of British Columbia (UBC), University of Edinburgh, Unité de Nutrition Humaine - Clermont Auvergne (UNH), Institut National de la Recherche Agronomique (INRA)-Université Clermont Auvergne (UCA), Australian Regenerative Medicine Institute, Monash University, Clayton, 3800, VIC, Australia, Faculty of Engineering and Natural Sciences, Sabanci University [Istanbul], Department of Biological Sciences [Stanford], Stanford University [Stanford], Université de Montréal (UdeM), Department of Human Genetics, Department of Psychiatry, University of Michigan System-University of Michigan System-Molecular and Behavioral Neuroscience Institute, Centre for Computational and Systems Biology (COSBI), Department of Computer Science [Tsukuba], Graduate School of Systems and Information Engineering [Tsukuba], University of Tsukuba-University of Tsukuba, Institut de biochimie et génétique cellulaires (IBGC), University of Western Ontario (UWO), Genetics, Dynamique Musculaire et Métabolisme (DMEM), Institut National de la Recherche Agronomique (INRA)-Université de Montpellier (UM), Department of Biochemistry and Biophysics, University of Naples Federico II, Lund University [Lund], Institute of Molecular Biosciences, Karl-Franzens University Graz, (IMB), Karl-Franzens-Universität Graz, Polytechnic University of Marche, Centre de Recherche en Cancérologie de Marseille (CRCM), Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Institut Paoli-Calmettes, Fédération nationale des Centres de lutte contre le Cancer (FNCLCC)-Fédération nationale des Centres de lutte contre le Cancer (FNCLCC)-Aix Marseille Université (AMU), Cell Biology, Physiology and Immunology, Research Unit on BioActive Molecules, Departamento de Química Orgánica Biológica, Instituto de Investigaciones Quimicas y Ambientales de Barcelona, Department of Experimental Oncology and Molecular Medicine, Fondazione IRCCS Istituto Nazionale dei Tumori, Physiopathologie et thérapie du muscle strié, Université Pierre et Marie Curie - Paris 6 (UPMC)-IFR14-Institut National de la Santé et de la Recherche Médicale (INSERM), The Buck Institute for Age Research, University of Pisa - Università di Pisa, Laboratorio di Genetica Molecolare, Istituto Gaslini, Universidad de Castilla-La Mancha (UCLM), Laboratoire de Biologie Moléculaire et Cellulaire du Cancer, Hôpital Kirchberg, University of Crete [Heraklion] (UOC), Division of Molecular and Cellular Pathology [Birmingham], Department of Medical Research, Taichung Veterans General Hospital, Modélisation et Simulation Numérique en Mécanique et Génie des Procédés (MSNMGP), Université de la Méditerranée - Aix-Marseille 2-Université Paul Cézanne - Aix-Marseille 3-Université de Provence - Aix-Marseille 1-Centre National de la Recherche Scientifique (CNRS), University of Queensland [Brisbane], Dept of Mathematics, Purdue University, Purdue University [West Lafayette], Virologie et Pathologie Humaine (VirPath), École normale supérieure - Lyon (ENS Lyon)-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Laboratoire de chimie de coordination (LCC), Institut National Polytechnique (Toulouse) (Toulouse INP), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Université Toulouse III - Paul Sabatier (UT3), Université Fédérale Toulouse Midi-Pyrénées-Institut de Chimie de Toulouse (ICT-FR 2599), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Institut de Recherche pour le Développement (IRD)-Université Toulouse III - Paul Sabatier (UT3), Université Fédérale Toulouse Midi-Pyrénées-Centre National de la Recherche Scientifique (CNRS)-Institut de Recherche pour le Développement (IRD)-Centre National de la Recherche Scientifique (CNRS)-Centre National de la Recherche Scientifique (CNRS), Zhejiang University, Équipe Micro et nanosystèmes HyperFréquences Fluidiques (LAAS-MH2F), Laboratoire d'analyse et d'architecture des systèmes (LAAS), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Institut National des Sciences Appliquées - Toulouse (INSA Toulouse), Institut National des Sciences Appliquées (INSA)-Institut National des Sciences Appliquées (INSA)-Université Toulouse III - Paul Sabatier (UT3), Université Fédérale Toulouse Midi-Pyrénées-Centre National de la Recherche Scientifique (CNRS)-Université Toulouse 1 Capitole (UT1)-Université Toulouse - Jean Jaurès (UT2J)-Institut National Polytechnique (Toulouse) (Toulouse INP), Université Fédérale Toulouse Midi-Pyrénées-Centre National de la Recherche Scientifique (CNRS)-Université Toulouse 1 Capitole (UT1)-Université Toulouse - Jean Jaurès (UT2J), King Abdullah University of Science and Technology (KAUST), Southern University of Science and Technology of China (SUSTech), OASE, National University of Tainan, Taiwan (OASE), National Taiwan University [Taiwan] (NTU), Weifang Bureau of Land Resources [Weifang], Department of cardiology [Guy's and St. Thomas ' hospitals] [London], Guy's and St Thomas' Hospital [London]-Guy's Hospital [London], University of Pennsylvania [Philadelphia], CRLCC Eugène Marquis (CRLCC), Emory University School of Medicine, Emory University [Atlanta, GA], Korea University, Cytokines et Immunologie des Tumeurs Humaines (U753), Université Paris-Sud - Paris 11 (UP11)-Institut Gustave Roussy (IGR)-Institut National de la Santé et de la Recherche Médicale (INSERM), Department of Pharmacology [Tartu, Estonie], Institute of Biomedicine and Translational Medicine [Tartu, Estonie], University of Tartu-University of Tartu, Max-Planck-Institut für Biophysikalische Chemie - Max Planck Institute for Biophysical Chemistry [Göttingen], Max-Planck-Gesellschaft, University of Pittsburgh (PITT), Pennsylvania Commonwealth System of Higher Education (PCSHE), University of Cincinnati (UC), Réponses immunes : régulation et développement, Université Paris Diderot - Paris 7 (UPD7)-Institut National de la Santé et de la Recherche Médicale (INSERM), Department of Experimental Medicine, Oxford University, University of Oxford [Oxford], Division of regenerative Medicine, San Raffaele Scientific Institute, The University of New Mexico [Albuquerque], Université Libre de Bruxelles [Bruxelles] (ULB), Macrophages et Développement de l'Immunité, Institut Pasteur [Paris]-Centre National de la Recherche Scientifique (CNRS), Department of Molecular Microbiology and Immunology, Johns Hopkins Bloomberg School of Public Health [Baltimore], Johns Hopkins University (JHU)-Johns Hopkins University (JHU), Institut du Cerveau et de la Moëlle Epinière = Brain and Spine Institute (ICM), Institut National de la Santé et de la Recherche Médicale (INSERM)-CHU Pitié-Salpêtrière [APHP]-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS), Dipartimento di Scienze Biomediche, Università degli Studi di Modena e Reggio Emilia (UNIMORE), Department of Experimental Medicine and Oncology, University of Turin, Institut de Génomique Fonctionnelle (IGF), Université de Montpellier (UM)-Université Montpellier 1 (UM1)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Montpellier 2 - Sciences et Techniques (UM2)-Centre National de la Recherche Scientifique (CNRS), CNV, University of Valparaiso, Institut Gustave Roussy (IGR), Universidad Autonoma de Madrid (UAM), Cell Signalling & Proteomics Group [Londres, Royayme-Uni], Barts Cancer Institute [Londres, Royayme-Uni], Queen Mary University of London (QMUL)-Queen Mary University of London (QMUL), Department of General, Visceral and Vascular Surgery [Jena], Friedrich-Schiller-Universität Jena, Department of Biomedical Engineering, The University of Texas at Austin, University of Texas at Austin, Microbes, Intestin, Inflammation et Susceptibilité de l'Hôte - Clermont Auvergne (M2iSH), Institut National de la Recherche Agronomique (INRA)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Clermont Auvergne (UCA)-Centre de Recherche en Nutrition Humaine d'Auvergne (CRNH d'Auvergne), Fondazione Santa Lucia (IRCCS), Institut National de la Santé et de la Recherche Médicale (INSERM), Institut Jacques Monod (IJM (UMR_7592)), Institute of Biological, Environmental and Rural Sciences (IBERS), Aberystwyth University, Department of Biology, Johns Hopkins University (JHU), Neurogenetics Group, Instituto de Investigación en Recursos Cinegéticos (IREC), Laboratório de Ultraestrutura Celular Hertha Meyer (IBCCF), Universidade Federal do Rio de Janeiro [Rio de Janeiro] (UFRJ), Eidgenössische Technische Hochschule - Swiss Federal Institute of Technology in Zürich [Zürich] (ETH Zürich), Molecular and Cellular Biology, Catholic University of Leuven - Katholieke Universiteit Leuven (KU Leuven), National University of Ireland [Galway] (NUI Galway), Institut des Maladies Neurodégénératives [Bordeaux] (IMN), Université de Bordeaux (UB)-Centre National de la Recherche Scientifique (CNRS), Freiburg Institute for Advanced Studies-LifeNet, Albert-Ludwigs-Universität Freiburg, Groupe de Recherche en Immunopathologies et maladies infectueuses (GRI), Université de La Réunion (UR)-Centre hospitalier Félix-Guyon [Saint-Denis, La Réunion], Brunel University London [Uxbridge], Unité Propre de Recherche 2357, Institution de Biologie Moléculaire des Plantes, Radiothérapie moléculaire (UMR 1030), Department of Chemistry, University of Kentucky, Universidad de Córdoba [Cordoba], Institut Pasteur, Fondation Cenci Bolognetti - Istituto Pasteur Italia, Fondazione Cenci Bolognetti, Réseau International des Instituts Pasteur (RIIP)-Réseau International des Instituts Pasteur (RIIP)-Università degli Studi di Roma 'La Sapienza' [Rome], Facultad de Ciencias Químicas y Farmacéuticas, Centro de Estudios Moleculares de la Célula, Biochemistry and Molecular Biology, Goethe-University Frankfurt am Main, Department of Biological and Environmental Sciences and Technologies (DiSTeBA), Università del Salento, Institut Bergonié - Département de médecine, Université Bordeaux Segalen - Bordeaux 2-Centre régional de lutte contre le cancer [CRLCC], Institut National Polytechnique de Lorraine (INPL), Récepteurs nucléaires, maladies cardiovasculaires et diabète (EGID), Université de Lille, Droit et Santé-Institut National de la Santé et de la Recherche Médicale (INSERM)-Institut Pasteur de Lille, Réseau International des Instituts Pasteur (RIIP)-Réseau International des Instituts Pasteur (RIIP)-Centre Hospitalier Régional Universitaire [Lille] (CHRU Lille), Unité de Recherche sur les Maladies Cardiovasculaires, du Métabolisme et de la Nutrition = Institute of cardiometabolism and nutrition (ICAN), Assistance publique - Hôpitaux de Paris (AP-HP) (APHP)-Institut National de la Santé et de la Recherche Médicale (INSERM)-CHU Pitié-Salpêtrière [APHP]-Sorbonne Université (SU), Institut de recherches sur la catalyse et l'environnement de Lyon (IRCELYON), Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Centre National de la Recherche Scientifique (CNRS), Laboratoire de signalisation moléculaire et neurodégénerescence, Université Louis Pasteur - Strasbourg I-IFR37-Institut National de la Santé et de la Recherche Médicale (INSERM), Institut Européen de Chimie et Biologie (IECB), Centre National de la Recherche Scientifique (CNRS)-Université de Bordeaux (UB)-Institut National de la Santé et de la Recherche Médicale (INSERM), Trafic membranaire et Division cellulaire, Landesbetrieb Hessisches Landeslabor, Hematology-Oncology Division, Perelman School of Medicine, University of Pennsylvania [Philadelphia]-University of Pennsylvania [Philadelphia], University of Pavia, Instituto de Investigaciones Biotecnológicas [San Martín] (IIB-INTECH), Universidad Nacional de San Martin (UNSAM)-Consejo Nacional de Investigaciones Científicas y Técnicas [Buenos Aires] (CONICET), University of Helsinki, School of Physics and Astronomy [Exeter], University of Exeter, Department of Biomedicinal Chemistry (CSIC), Institut de Química Avançada de Catalunya, Laboratory of Vascular Pathology (IDI-IRCCS), Istituto Dermopatico dell'Immacolata, Peking University [Beijing], MRC Centre for Developmental Neurobiology, University of Brescia, Immunobiologie fondamentale et clinique, Université de Lyon-Université de Lyon-IFR128-Institut National de la Santé et de la Recherche Médicale (INSERM), CIC régional épidémiologie clinique/essais cliniques - Ile de la Réunion (CIC-EC), University of Rome 'Tor Vergeta', Universidad de Oviedo [Oviedo], Laboratoire des signaux et systèmes (L2S), Université Paris-Sud - Paris 11 (UP11)-CentraleSupélec-Centre National de la Recherche Scientifique (CNRS), Dulbecco Telethon Institute/Department of Biology, Istituto Nazionale di Malattie Infettive 'Lazzaro Spallanzani' (INMI), Rockefeller University [New York], The Babraham Institute, Kansas State University, McGill University, Service d'Anatomie et Cytologie Pathologique [Rouen], CHU Rouen, Normandie Université (NU)-Normandie Université (NU)-Université de Rouen Normandie (UNIROUEN), Normandie Université (NU), Laboratoire Interuniversitaire de Biologie de la Motricité (LIBM ), Université de Lyon-Université de Lyon-Université Jean Monnet [Saint-Étienne] (UJM)-Université Savoie Mont Blanc (USMB [Université de Savoie] [Université de Chambéry]), Department of Medicine [New York], Icahn School of Medicine at Mount Sinai [New York] (MSSM), ATOS Origin, Department of Developmental Biology and Neurosciences, Graduate School of Life Sciences-Tohoku University [Sendai], Goethe-University, Goethe-Universität Frankfurt am Main, Institute of physiological chemistry, Hannover Medical School [Hannover] (MHH), Department of Physiology, Department of Plant and Environmental Sciences, Apoptose, cancer et immunité (U848), Laboratoire de Biologie du Développement (LBD), Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut de Biologie Paris Seine (IBPS), Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Centre National de la Recherche Scientifique (CNRS), Departments of Neurology and Psychiatry, Alzheimer's Disease Research Center, Institute of Experimental Immunology - IEI [Zürich, Switzerland], Université de Zurich [Switzerland], Digital Enterprise Research Institute (DERI-NUIG), Spanish National Research Council (CSIC), Cell Death Research and Therapy Unit [Leuven, Belgium] ( Department of Cellular and Molecular Medicine), Centre d'Immunologie de Marseille - Luminy (CIML), Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Aix Marseille Université (AMU), Signaling in Oncogenesis, Angiogenesis and Permeability - SOAP (CRCINA - Département ONCO - Equipe 15), Centre de recherche de Cancérologie et d'Immunologie / Nantes - Angers (CRCINA), Université d'Angers (UA)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Centre hospitalier universitaire de Nantes (CHU Nantes)-Université de Nantes - UFR de Médecine et des Techniques Médicales (UFR MEDECINE), Université de Nantes (UN)-Université de Nantes (UN)-Université d'Angers (UA)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Centre hospitalier universitaire de Nantes (CHU Nantes)-Université de Nantes - UFR de Médecine et des Techniques Médicales (UFR MEDECINE), Université de Nantes (UN)-Université de Nantes (UN), Department of Medicine [San Francisco], University of California [San Francisco] (UCSF), University of California-University of California, Fondazione Santa Lucia [IRCCS], Clinical and Behavioral Neurology [IRCCS Santa Lucia], Institut de biologie moléculaire des plantes (IBMP), Université de Strasbourg (UNISTRA)-Centre National de la Recherche Scientifique (CNRS), Unité de Recherche sur les Maladies Infectieuses et Tropicales Emergentes (URMITE), Institut de Recherche pour le Développement (IRD)-Aix Marseille Université (AMU)-Institut National de la Santé et de la Recherche Médicale (INSERM)-IFR48, INSB-INSB-Centre National de la Recherche Scientifique (CNRS), Department of Anatomy, Histology, Forensic Medicine and Orthopedic, N.A., Division of Pharmacology and Chemotherapy, Department of Internal Medicine, Pathogénie Microbienne Moléculaire, University of Chile [Santiago], Université de Montpellier (UM), Faculdade de Ciências Farmacêuticas de Ribeirão Preto [São Paulo], Universidade de São Paulo (USP), Centro de Investigación Biomédica en Red en Enfermedades Neurodegenerativas (CIBERNED), Institut de recherche en cancérologie de Montpellier (IRCM - U896 Inserm - UM1), CRLCC Val d'Aurelle - Paul Lamarque-Université de Montpellier (UM)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Montpellier 1 (UM1), Catalan Institute of Oncology, Department of Cell Biology, National Institute for Basic Biology [Okazaki], Instituto de Bioquímica Vegetal y Fotosíntesis (IBVF), Universidad de Sevilla-Centro de Investigaciones Científicas Isla de la Cartuja, The Adams Super Center for Brain Studies, Tel Aviv University [Tel Aviv], Institut de Biologie du Développement de Marseille (IBDM), Aix Marseille Université (AMU)-Collège de France (CdF)-Centre National de la Recherche Scientifique (CNRS), Department of Pharmacology and biochemistry, Virginia Commonwealth University (VCU), Department of Immunology, St Jude Children's Research Hospital, Department of Biology and Biotechnologies 'Charles Darwin', Lettres, Idées, Savoir (LIS), Université Paris-Est Créteil Val-de-Marne - Paris 12 (UPEC UP12), Institute of Biological Chemistry and Nutrition, University of Hohenheim, China Seismological Bureau, Massachusetts Institute of Technology (MIT), Rosenstiel Basic Medical Sciences Research Center [Waltham], Brandeis University, Institut Necker Enfants-Malades (INEM - UM 111 (UMR 8253 / U1151)), Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Université de Strasbourg (UNISTRA), Meakins-Christie Laboratories, Sanford Burnham Medical Research Institute, La Jolla, National Institute of Advanced Industrial Science and Technology (AIST), ORIENT ET MÉDITERRANÉE : Textes, Archéologie, Histoire (OM), Université Panthéon-Sorbonne (UP1)-École pratique des hautes études (EPHE)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS), David Geffen School of Medicine [Los Angeles], University of California [Los Angeles] (UCLA), Ludwig Institute for Cancer Research, Royal Melbourne Hospital, Centro de Investigacion y de Estudios Avanzados del Instituto Politécnico Nacional (CINVESTAV), Biochemistry and Molecular Biology I, Department of Immunology and Infectious Diseases, Harvard School of Public Health, aDepartment of Plant Biology, Uppsala BioCenter, Swedish University of Agricultural Sciences (SLU), Philipps University of Marburg, Cologne Excellence Cluster on Cellular Stress Responses in Aging-Associated Diseases (CECAD), University of Cologne, Renal Division, University Medical Center Freiburg, Freiburg, Germany, Rural Health Academic Centre, University of Melbourne-Rural Clinical School, Department of Pathology, University of Veterinary and Animal Sciences, Dipartimento di Scienze della Vita [Modena, Italy], Stress Cellulaire, Université de la Méditerranée - Aix-Marseille 2-Institut National de la Santé et de la Recherche Médicale (INSERM), Department of Pathology, Anatomy & Cell Biology [Philadelphia, Pennsylvania, USA], Thomas Jefferson University, Department of Molecular Neuroscience, Departamento de Bioquimica Clinica, Facultad de Ciencias Quimicas, Centro de Investigación en Bioquímica Clínica e Inmunología (CONICET), Universidad Nacional de Córdoba, Córdoba, Argentina, Neuroinflammation Unit, Biotech Research and Innovation Centre-University of Copenhagen = Københavns Universitet (KU), Mathematics and Computing in Automatic Control and Optimization for the User (MIAOU), Inria Sophia Antipolis - Méditerranée (CRISAM), Institut National de Recherche en Informatique et en Automatique (Inria)-Institut National de Recherche en Informatique et en Automatique (Inria), Centre de Recherche des Cordeliers (CRC), Université Paris Diderot - Paris 7 (UPD7)-École pratique des hautes études (EPHE)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM), Danish Cancer Society, Institute of Cancer Biology, UCL-Institute of Child Health (ICH), Institute of Child Health-Great Ormond Street Hospital for Children [London] (GOSH), Division of Renal Diseases and Hypertension, University of Colorado [Boulder], Institut de biologie et chimie des protéines [Lyon] (IBCP), Joslin Diabetes Center, Universität Ulm - Ulm University [Ulm, Allemagne], Qingdao Institute of Marine Geology, China Geological Survey, Qingdao 266071, China, Université Paris Diderot - Paris 7 (UPD7), Institute of Software, Chinese Academy of Sciences [Beijing] (CAS), Metabolic Engineering Group, Departamento de Microbiologia y Genetica, Edificio Departamental, Campus Miguel de Unamuno, Universidad de Salamanca, University of Minnesota [Twin Cities], University of Minnesota System, Department of Cellular and Molecular Physiology, Yale University School of Medicine, The Arctic University of Norway, Department of Biological Sciences, The Open University [Milton Keynes] (OU), Summit Analytical, CALRG, Institute of Educational Technology, Institute for Neurologic Disabilities Research, Faculty of Health Sciences-University of Pretoria [South Africa], Department of Paediatric Neurology, Guy's and St Thomas' Hospital [London]-Evelina Children's Hospital, Physiologie des Adaptations Nutritionnelles [UMR_A1280] (PhAN), Institut National de la Recherche Agronomique (INRA)-Université de Nantes (UN), Dana-Farber Cancer Institute and the Department of Cell Biology, Harward Medical School, Translational Health Science and Technology Institute [Faridabad] (THSTI), Department of Biomedical Sciences of Cells and Systems, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands, School of Reliability and Systems Engineering [Beijing], Beihang University, Oxford Centre for Integrative Systems Biology, Center for Membrane and Cell Physiology [Charlottesville, VA, USA] (School of Medicine), University of Virginia [Charlottesville], Apoptose, cancer et immunité (Equipe labellisée Ligue contre le cancer - CRC - Inserm U1138), Institut Gustave Roussy (IGR)-Centre de Recherche des Cordeliers (CRC (UMR_S_1138 / U1138)), École pratique des hautes études (EPHE)-Université Paris Diderot - Paris 7 (UPD7)-Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Sorbonne Université (SU)-École pratique des hautes études (EPHE)-Université Paris Diderot - Paris 7 (UPD7)-Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Sorbonne Université (SU), St James's University Hospital, Leeds Teaching Hospitals NHS Trust, Karlsruher Institut für Technologie (KIT), Faculty of Pharmaceutical Sciences, Hokkaido University, École normale supérieure - Paris (ENS Paris), School of Electrical Engineering [Seoul] (Korea University), Department of Mathematics and Statistics [Guelph], University of Guelph, Department of Molecular Genetics, Department of Genetics [Stanford, CA, États-Unis], Institute of Immunology, University Hospital Schleswig-Holstein, Arizona Respiratory Center, Okazaki Institute for Integrative Bioscience, ToxAlim (ToxAlim), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Institut National Polytechnique (Toulouse) (Toulouse INP), Université Fédérale Toulouse Midi-Pyrénées-Ecole Nationale Vétérinaire de Toulouse (ENVT), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Ecole d'Ingénieurs de Purpan (INPT - EI Purpan), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Institut National de la Recherche Agronomique (INRA), Newcastle University [Newcastle], JRC Institute for Transuranium Elements [Karlsruhe] (ITU ), European Commission - Joint Research Centre [Karlsruhe] (JRC), Department of Neuroscience, University of Texas Southwestern Medical Center [Dallas], Centre de génétique et de physiologie moléculaire et cellulaire (CGPhiMC), Laboratory of Functional Neurogenomics [Tuebingen, Germany], University of Tuebingen-Center of Neurology and Hertie-Institute for Clinical Brain Research [Tuebingen, Germany], Indian Institute of Technology Bombay (IIT Bombay), European Organization for Nuclear Research (CERN), Harvard Medical School [Boston] (HMS), Indian School of Mines, Department of Computer Science [UIUC] (UIUC), University of Illinois at Urbana-Champaign [Urbana], University of Illinois System-University of Illinois System, Centre for Cancer Biology, Hanson Institute, Adelaide, University of California [San Diego] (UC San Diego), University of California, Centre d’Infection et d’Immunité de Lille (CIIL) - U1019 - UMR 8204 (CIIL), Institut Pasteur de Lille, Réseau International des Instituts Pasteur (RIIP)-Réseau International des Instituts Pasteur (RIIP)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université de Lille-Centre National de la Recherche Scientifique (CNRS), Department of Biochemistry, University of Bristol, Organisation Nucléaire et Oncogenèse, Institut de génétique et biologie moléculaire et cellulaire (IGBMC), Université Louis Pasteur - Strasbourg I-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), FONDAP Center CEMC Estudios Moleculares de la Célula, Unité de Biologie Fonctionnelle et Adaptative (BFA (UMR_8251 / U1133)), Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Université Paris Diderot - Paris 7 (UPD7), Centre d'infectiologie Necker-Pasteur [CHU Necker], CHU Necker - Enfants Malades [AP-HP], Chungnam National Univesity School of Medicine, Taejon, Korea, Chungnam National Univesity School of Medicine, Micro & Nanobiotechnologies, Institut des Sciences Analytiques (ISA), Centre National de la Recherche Scientifique (CNRS)-Université de Lyon-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-École normale supérieure - Lyon (ENS Lyon)-Centre National de la Recherche Scientifique (CNRS)-Université de Lyon-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-École normale supérieure - Lyon (ENS Lyon), Centre de Recherche en Cancérologie de Lyon (CRCL), Université de Lyon-Université de Lyon-Centre Léon Bérard [Lyon]-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Centre de génétique moléculaire (CGM), Université Paris-Sud - Paris 11 (UP11)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Centre National de la Recherche Scientifique (CNRS), Center for Applied Mathematics, Tsinghua University [Beijing], University of Connecticut School of Medicine, University of Connecticut (UCONN), Laboratoire de Biologie Moléculaire et Cellulaire des Eucaryotes (LBMCE), Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS), Microenvironnement et Physiopathologie de la Differenciation, Division of Nephrology and Hypertension, Mayo Clinic, Beatson Institute for Cancer Research, Beatson institute for cancer research, Howard Hughes Medical Institute, Howard Hugues Medical Institute, Institut des Maladies Métaboliques et Cardiovasculaires (I2MC), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Institut National de la Santé et de la Recherche Médicale (INSERM), Institute of Computing Technology [Beijing] (ICT), Chinese Academy of Sciences [Changchun Branch] (CAS), School of Electronics and Computer Science (ECS), University of Southampton, Third Hospital, Department of Anesthesiology, Cognitive Interaction Technology [Bielefeld] (CITEC), Universität Bielefeld = Bielefeld University, Procédés, Matériaux et Energie Solaire (PROMES), Université de Perpignan Via Domitia (UPVD)-Centre National de la Recherche Scientifique (CNRS), Faculty of Pharmacy- University of Coimbra, National Neuroscience Institute, Key Laboratory of Molecular Virology & Immunology (LMVI), Institut Pasteur de Shanghai, Académie des Sciences de Chine - Chinese Academy of Sciences (IPS-CAS), Réseau International des Instituts Pasteur (RIIP)-Réseau International des Instituts Pasteur (RIIP), Coll Life Sci, Beijing Normal University, Delft University of Technology (TU Delft), Christian-Albrechts-Universität zu Kiel (CAU), Department of Molecular Pathology and Microbiology, Center for Applied Proteomics and Molecular Medicine-George Mason University [Fairfax], Sidney Kimmel Cancer Center, Jefferson (Philadelphia University + Thomas Jefferson University), Institut des Sciences Chimiques de Rennes (ISCR), Institut National des Sciences Appliquées - Rennes (INSA Rennes), Institut National des Sciences Appliquées (INSA)-Université de Rennes (UNIV-RENNES)-Institut National des Sciences Appliquées (INSA)-Université de Rennes (UNIV-RENNES)-Centre National de la Recherche Scientifique (CNRS)-Ecole Nationale Supérieure de Chimie de Rennes-Université de Rennes 1 (UR1), Université de Rennes (UNIV-RENNES), Department of Chemistry, University of Pittsburgh, University of Pittsburg, Tianjin University of Science and Technology (TUST), Hunan University of Science and Technology [Xiangtan], Laboratoire de Génie Civil et Génie Mécanique (LGCGM), Université de Rennes 1 (UR1), Université de Rennes (UNIV-RENNES)-Université de Rennes (UNIV-RENNES)-Institut National des Sciences Appliquées - Rennes (INSA Rennes), Institut National des Sciences Appliquées (INSA)-Université de Rennes (UNIV-RENNES)-Institut National des Sciences Appliquées (INSA), China Agricultural University (CAU), Acad Disaster Reduct and Emergency Management, Minist Civil Affairs, Minist Educ, Beijing, Peoples R China, affiliation inconnue, Département Technologie des Polymères et Composites & Ingénierie Mécanique (TPCIM), École des Mines de Douai (Mines Douai EMD), Institut Mines-Télécom [Paris] (IMT)-Institut Mines-Télécom [Paris] (IMT)-Ministère de l'Economie, des Finances et de l'Industrie, MOE Key Laboratory of Bioinformatics, Centre for Plant Biology, School of Life Sciences, Laboratoire d'Informatique Gaspard-Monge (ligm), Université Paris-Est Marne-la-Vallée (UPEM)-École des Ponts ParisTech (ENPC)-ESIEE Paris-Fédération de Recherche Bézout-Centre National de la Recherche Scientifique (CNRS), Laboratoire de Biochimie Moléculaire et Cellulaire (LBMC), Université de Bourgogne (UB), Center for International Blood and Marrow Transplant Research (CIBMTR), Emory University [Atlanta, GA]-Medical College of Wisconsin, Centre de biophysique moléculaire (CBM), Université d'Orléans (UO)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Illman Cancer Center, Pennsylvania Commonwealth System of Higher Education (PCSHE)-Pennsylvania Commonwealth System of Higher Education (PCSHE), Ingénierie des Matériaux Polymères (IMP), Université de Lyon-Université de Lyon-Institut National des Sciences Appliquées de Lyon (INSA Lyon), Université de Lyon-Institut National des Sciences Appliquées (INSA)-Institut National des Sciences Appliquées (INSA)-Université Jean Monnet [Saint-Étienne] (UJM)-Centre National de la Recherche Scientifique (CNRS), Université Côte d'Azur (UCA), Department of Medical Microbiology and Immunology, University of California [Davis] (UC Davis), School of Health Sciences, University of Minho [Braga], Équipe Calcul Distribué et Asynchronisme (LAAS-CDA), University of California [Riverside] (UCR), Ohio State University [Columbus] (OSU), Laboratory of Systems Biology, Van Andel Institute [Grand Rapids], Division of Genetics and Cell Biology, National Center for Gender-Specific Medicine, Istituto Superiore di Sanità, Oregon Health and Science University [Portland] (OHSU), Dendrite Differenciation Group [DZNE - Bonn], German Research Center for Neurodegenerative Diseases - Deutsches Zentrum für Neurodegenerative Erkrankungen (DZNE), Equipe 12, Génétique moléculaire, signalisation et cancer (GMSC), Centre National de la Recherche Scientifique (CNRS)-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Centre National de la Recherche Scientifique (CNRS)-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Centre de Recherche en Cancérologie de Lyon (CRCL), Université de Lyon-Université de Lyon-Centre Léon Bérard [Lyon]-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Centre Léon Bérard [Lyon]-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), University Medical Center [Utrecht], Institut d'Investigacions Biomèdiques August Pi I Sunyer [Barcelona, Spain] (Hospital Clinic ), Department of Genetics, Trinity College Dublin, Fisiopatologia de los procesos inflamatorios, Vall d'Hebron Research Institute, Institució Catalana de Recerca i Estudis Avançats (ICREA), Department of Human Genetics, Nagasaki University, Transduction du signal et oncogénèse, Institut National de la Santé et de la Recherche Médicale (INSERM)-Institut Curie, Center for Experimental and Molecular Medicine, Academic Medical Center - Academisch Medisch Centrum [Amsterdam] (AMC), University of Amsterdam [Amsterdam] (UvA)-University of Amsterdam [Amsterdam] (UvA), Department of medical Biochemistry, University of Amsterdam [Amsterdam] (UvA), IDI-IRCCS Biochemistry Laboratory, Università degli Studi di Roma Tor Vergata [Roma], Program Against Cancer Therapeutic Resistance/Metabolism & Cancer Group [Catalonia, Spain] (ProCURE), Catalan Institute of Oncology-Girona (ICO-Girona), Instituto de Tecnologia Química e Biológica António Xavier (ITQB), Universidade Nova de Lisboa (NOVA), Medical Genetics Unit, IRCCS Casa Sollievo della Sofferenza Hospital, CNR, Consiglio Nazionale delle Ricerche (CNR), Biochimie et Physiologie Moléculaire des Plantes (BPMP), Université de Montpellier (UM)-Centre international d'études supérieures en sciences agronomiques (Montpellier SupAgro)-Institut national d’études supérieures agronomiques de Montpellier (Montpellier SupAgro)-Institut National de la Recherche Agronomique (INRA)-Centre National de la Recherche Scientifique (CNRS), Laboratory for Developmental Neurobiology, RIKEN Brain Science Institute, The Hospital for sick children [Toronto] (SickKids), Universidad de Sevilla, Immunité muqueuse et vaccination, Institut National de la Santé et de la Recherche Médicale (INSERM)-IFR50-Université Nice Sophia Antipolis (... - 2019) (UNS), DIMS, University of Trento [Trento], Laboratoire de Biologie Moléculaire de la Cellule (LBMC), Department of Cellular and Molecular Medicine [Madrid, Spain], Laboratory of Cell Death and Cancer Therapy [Madrid, Spain], Centro de Investigaciones Biológicas, Consejo Superior de Investigaciones Científicas (CSIC) -Centro de Investigaciones Biológicas, Consejo Superior de Investigaciones Científicas (CSIC), Plymouth Marine Laboratory, Prospect Place, The Hoe, Plymouth PL1 3HD, UK, Centre d'Immunologie et de Maladies Infectieuses (CIMI), Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Dpt. of Cancer & Cell Biology, Interactions Bactéries-Cellules (UIBC), Institut National de la Santé et de la Recherche Médicale (INSERM)-Institut Pasteur [Paris]-Institut National de la Recherche Agronomique (INRA), Max planck Institute for Biology of Ageing [Cologne], Euromov (EuroMov), Wellcome Trust Centre for Molecular Parasitology [Glasgow, UK], University of Glasgow- Institute of Infection, Immunity and Inflammation [Glasgow, UK], Immunologie et chimie thérapeutiques (ICT), Cancéropôle du Grand Est-Centre National de la Recherche Scientifique (CNRS), UMR 1599, Centre National de la Recherche Scientifique (CNRS), EA 4100, Histoire culturelle et sociale de l'art (HiCSA), Université Panthéon-Sorbonne (UP1)-Université Panthéon-Sorbonne (UP1), Centre for Astrophysics and Supercomputing (Centre for Astrophysics and Supercomputing), Swinburne University of Technology [Melbourne], Department of Cellular and Physiological Sciences [Vancouver, BC, Canada] (Life Sciences Institute), University of British Columbia (UBC)-Life Sciences Institute [Vancouver, BC, Canada], School of Pharmacy, Department of Experimental Medicine, Dept. Neurosciences, Department of Internal Medicine, Radboud University Medical Center [Nijmegen], Institute of Medical Genetics and Applied Genomics, Radiation Physics, School of Life Science, Department of Basic Biology, The Graduate University for Advanced Studies, CIBER de Enfermedades Neurodegenerativas (CIBERNED), Doshisha University, National Cancer Research Center [Tokyo, Japan], University of Washington [Seattle], Department of Experimental Neurodegeneration [Göttingen, Germany], University Medical Center Göttingen (UMG), Cibles moléculaires et thérapeutiques de la maladie d'Alzheimer (CIMoTHeMA), Université de Poitiers, Laboratoire de Probabilités et Modèles Aléatoires (LPMA), Université Pierre et Marie Curie - Paris 6 (UPMC)-Université Paris Diderot - Paris 7 (UPD7)-Centre National de la Recherche Scientifique (CNRS), BioCeV-Institute of Microbiology, Médecine Personnalisée, Pharmacogénomique, Optimisation Thérapeutique (MEPPOT - U1147), Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM), Istituto di chimica biologica, Università degli Studi di Verona, Département Image et Traitement Information (ITI), Institut Mines-Télécom [Paris] (IMT)-Université européenne de Bretagne - European University of Brittany (UEB)-Télécom Bretagne, Department of Cell Biology and Biophysics, Università degli Studi di Firenze [Firenze], Cell Immunity in Cancer, Inflammation and infection Group [Zaragoza, Spain] (Biomedical Research Center), Nanoscience Institute of Aragon - INA [Zaragoza, Spain]-Fundación Agencia Aragonesa para la Investigación y el Desarrollo - ARAID [Zaragoza, Spain]-University of Zaragoza - Universidad de Zaragoza [Zaragoza], Department of Pediatrics, Università degli studi di Napoli Federico II, Transfert de Genes a Visee Therapeutique Dans les Cellules Souches, Developpement Normal et Pathologique du Système Immunitaire, Signalisation et physiopathologie des cellules épithéliales, Facultad de Medicina, Universidad de Santiago de Chile [Santiago] (USACH), Departamento de Farmacobiología, Cinvestav-Sede Sur, Centre de recherche Croissance et signalisation (UMR_S 845), College of Life Sciences, Central China Normal University, Institute of Molecular Biotechnology, Austrian Academy of Sciences (OeAW), Laboratory of Cardiac Surgical Research, Monash University [Clayton], Universidade do Minho, Université Pierre et Marie Curie - Paris 6 (UPMC)-Centre National de la Recherche Scientifique (CNRS), Neurodegenerative Diseases Research Group (CIBERNED), Vall d'Hebron Research Institute-Center for Networked Biomedical Research on Neurodegenerative Diseases, Barcelona, Department of medicine, Syracuse, NY, USA, State University of New York (SUNY), National University of Singapore (NUS)-Yong Loo Lin School of Medicine-Graduate School for Integrative Sciences and Engineering, McGill University Health Center [Montreal] (MUHC), National Institute for Infectious Diseases, Transporteurs en Imagerie et Radiothérapie en Oncologie (TIRO - UMR E4320), Service Hospitalier Frédéric Joliot (SHFJ), Université Paris-Saclay-Direction de Recherche Fondamentale (CEA) (DRF (CEA)), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay-Direction de Recherche Fondamentale (CEA) (DRF (CEA)), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-UMR E4320 (TIRO-MATOs), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Nice Sophia Antipolis (... - 2019) (UNS), Université Côte d'Azur (UCA)-Université Côte d'Azur (UCA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Nice Sophia Antipolis (... - 2019) (UNS), Institut Gustave Roussy (IGR)-Centre de Recherche des Cordeliers (CRC), Université Paris Diderot - Paris 7 (UPD7)-École pratique des hautes études (EPHE)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Paris Diderot - Paris 7 (UPD7)-École pratique des hautes études (EPHE)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM), Department of Biomedical Sciences, Department of Genetics of Eukaryotic Microorganisms, Georg-August-University [Göttingen]-Institute of Microbiology and Genetics, Sterol metabolism and therapeutic innovations in oncology, Institut Claudius Regaud, CRLCC Institut Claudius Regaud-CRLCC Institut Claudius Regaud-Université Toulouse III - Paul Sabatier (UT3), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées, Department of Molecular, Cellular and Developmental Biology, Señalización Celular 4, Institute of integrative biology (Liverpool), University of Liverpool, Department of Human Biology, University of Cape Town, National Institute of Diabetes and Digestive and Kidney Diseases [Bethesda], Department of Molecular Biology, Eberhard Karls Universität Tübingen, Technical University of Munich (TUM), Biophysics and Bioinformatics Laboratory, Department of Cell Biology and Morphology, Université de Lausanne (UNIL), Shenyang Institute of Automation, the Chinese Academy of Sciences (SIA), Key Laboratory of Thermo-Fluid Science and Engineering of Ministry of Education, Xi'an Jiaotong University (Xjtu), Dipartimento di Biologia, Mechanics laboratory , UniversityAmar Telidji, 3000 Laghouat, Algéria., Mechanics laboratory , University Amar Telidji, sans affiliation, Service d'hépatologie [Hôpital Beaujon], Assistance publique - Hôpitaux de Paris (AP-HP) (APHP), University of Waterloo, Waterloo, ON, Canada, Institute of Cell Biology and Immunology, University of Stuttgart, Chaperones Research Group, Institute of Biosciences and Technology [Houston, TX, États-Unis] (IBT), Texas A&M Health Science Center [Houston, TX, États-Unis] (TAMHSC), Texas A&M University Health Science Center-Texas A&M University Health Science Center, Aquatic and Crop Resource Development, National Research Council of Canada (NRC), Cibles thérapeutiques, formulation et expertise pré-clinique du médicament (CITHEFOR), Université de Lorraine (UL), Dipartimento di Scienze Cliniche e Molecolari, Università Politecnica delle Marche [Ancona] (UNIVPM), Department of Biochemistry and Molecular Biology [Indianapolis, IN, USA], Indiana University School of Medicine, Indiana University System-Indiana University System, Wellcome Trust Centre for Gene Regulation and Expression, College of Life Sciences, University of Dundee, iMed.UL, Faculty of Pharmacy, University of Lisbon, CESAM & Biology Department, Universidade de Aveiro, Celullar and Molecular Medicine, Università degli Studi di Perugia (UNIPG), Institute of Clinical Molecular Biology, Kiel University, Apoptose et Système Immunitaire (ASI), Vieillissement Cellulaire Intégré et Inflammation (VCII), Adaptation Biologique et Vieillissement = Biological Adaptation and Ageing (B2A), Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut de Biologie Paris Seine (IBPS), Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut de Biologie Paris Seine (IBPS), Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Department of Mathematical Sciences [Aalborg], Aalborg University [Denmark] (AAU), Cambridge Institute for Medical Research (CIMR), University of Cambridge [UK] (CAM), Biozentrum, University of Basel (Unibas), Structural and Computational Biology Unit, European Molecular Biology Laboratory [Grenoble] (EMBL), Rutgers New Jersey Medical School (NJMS), Rutgers University System (Rutgers), Université de Perpignan Via Domitia (UPVD), Universidad Pablo de Olavide [Sevilla] (UPO), Department of Neurosciences, Agronomes et Vétérinaires Sans Frontières (AVSF), AVSF, Department of Mathematics [Gakushuin], Gakushuin University, Department of Internal Medicine [Münster, Germany], University of Münster, Neurogenetics laboratory, University Medicine Goettingen, Institut de biologie structurale (IBS - UMR 5075), Institut de Recherche Interdisciplinaire de Grenoble (IRIG), Direction de Recherche Fondamentale (CEA) (DRF (CEA)), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Direction de Recherche Fondamentale (CEA) (DRF (CEA)), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Grenoble Alpes (UGA)-Centre National de la Recherche Scientifique (CNRS), Université d'Uruguay, Laboratoire de Biologie Cellulaire et Moléculaire du Contrôle de la Prolifération (LBCMCP), Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Toulouse III - Paul Sabatier (UT3), Institute for Conservation & Improvement of Valentian Agrodiversity (COMAV), Universitat Politecnica de Valencia (UPV), ICBM, University of Chile [Santiago]-Faculty of Medicine, Nutrition, Métabolisme, Aquaculture (NuMéA), Institut National de la Recherche Agronomique (INRA)-Université de Pau et des Pays de l'Adour (UPPA), Department of Cell Biology, Baltimore, Johns Hopkins University School of Medicine, Baylor College of Medicine (BCM), Baylor University, University of Minnesota Medical School, Beijing Candid soft Technology Co. Ltd, Nanjing University of Information Science and Technology, Department of Hepatobiliary and Pancreatic Surgery [Maebashi, Japan], Gunma University Graduate Schoolof Medicine [Maebashi, Japan], Department of Molecular Genetics [Maastricht, The Netherlands], Maastricht University [The Netherlands], Institute of Cell Biology and Genetic Engineering, National Academy of Sciences of Ukraine (NASU), Institute of Pharmacology of Natural Products and Clinical Pharmacology, Institute of Pharmacology, University of Bern, Imagine - Institut des maladies génétiques (IMAGINE - U1163), Wilmer Eye Institute, Mayo Clinic and Mayo College of Medicine, Rochester, Institute of Biochemistry and Biophysics, Polska Akademia Nauk (PAN)-Sciences, Department of Electrical and Computer Engineering [Waterloo] (ECE), University of Waterloo [Waterloo], Department of Chemistry and Toxicology, Norwegian Veterinary Institute, Department of Gynecologic Oncology, The University of Texas M.D. Anderson Cancer Center [Houston], University of Minho, Friedrich Miescher Laboratory (FML), Charité - Universitätsmedizin Berlin / Charite - University Medicine Berlin, Department of Biomedical Sciences and Biotechnologies, Brescia University, Department of Physiological Chemistry [Bochum], Ruhr-Universität Bochum [Bochum], University of Oslo (UiO), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Paris-Saclay, Facultés Universitaires Notre Dame de la Paix (FUNDP), COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-Institut National de la Santé et de la Recherche Médicale (INSERM), École pratique des hautes études (EPHE)-Centre de Coopération Internationale en Recherche Agronomique pour le Développement (Cirad)-Centre National de la Recherche Scientifique (CNRS)-Université de Montpellier (UM)-Institut de recherche pour le développement [IRD] : UR226, Université du Québec à Montréal = University of Québec in Montréal (UQAM), COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-École normale supérieure - Paris (ENS Paris), Université Paris sciences et lettres (PSL)-Université Paris sciences et lettres (PSL)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Centre National de la Recherche Scientifique (CNRS), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS), Centre National de la Recherche Scientifique (CNRS)-Assistance publique - Hôpitaux de Paris (AP-HP) (AP-HP)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Association française contre les myopathies (AFM-Téléthon)-Sorbonne Université (SU), Université Lille 2 - Faculté de Médecine -Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Lille Nord de France (COMUE)-Centre Hospitalier Régional Universitaire [Lille] (CHRU Lille), Institut National de la Santé et de la Recherche Médicale (INSERM)-Etablissement français du sang [Bourgogne-France-Comté] (EFS [Bourgogne-France-Comté])-Université de Franche-Comté (UFC), COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-IFR50-Institut National de la Santé et de la Recherche Médicale (INSERM), Aix Marseille Université (AMU)-Institut Paoli-Calmettes, Fédération nationale des Centres de lutte contre le Cancer (FNCLCC)-Fédération nationale des Centres de lutte contre le Cancer (FNCLCC)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Université de Lyon-Université de Lyon-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-École normale supérieure - Lyon (ENS Lyon), Institut de Chimie de Toulouse (ICT-FR 2599), Institut de Recherche pour le Développement (IRD)-Université Toulouse III - Paul Sabatier (UT3), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Centre National de la Recherche Scientifique (CNRS)-Institut National Polytechnique (Toulouse) (Toulouse INP), Université Fédérale Toulouse Midi-Pyrénées-Institut de Recherche pour le Développement (IRD)-Université Toulouse III - Paul Sabatier (UT3), Université Fédérale Toulouse Midi-Pyrénées-Centre National de la Recherche Scientifique (CNRS), Université Toulouse 1 Capitole (UT1)-Institut National des Sciences Appliquées - Toulouse (INSA Toulouse), Institut National des Sciences Appliquées (INSA)-Institut National des Sciences Appliquées (INSA)-Université Toulouse - Jean Jaurès (UT2J)-Université Toulouse III - Paul Sabatier (UT3), Université Fédérale Toulouse Midi-Pyrénées-Université Toulouse 1 Capitole (UT1)-Institut National des Sciences Appliquées - Toulouse (INSA Toulouse), Université Fédérale Toulouse Midi-Pyrénées, Université libre de Bruxelles (ULB), Institut National de la Santé et de la Recherche Médicale (INSERM)-CHU Pitié-Salpêtrière [AP-HP], Assistance publique - Hôpitaux de Paris (AP-HP) (AP-HP)-Assistance publique - Hôpitaux de Paris (AP-HP) (AP-HP)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS), Universidade Federal do Rio de Janeiro (UFRJ), Institut Bergonié [Bordeaux], UNICANCER, Assistance publique - Hôpitaux de Paris (AP-HP) (AP-HP)-Institut National de la Santé et de la Recherche Médicale (INSERM)-CHU Pitié-Salpêtrière [AP-HP], Assistance publique - Hôpitaux de Paris (AP-HP) (AP-HP)-Sorbonne Université (SU), Trafic membranaire et Division cellulaire - Membrane Traffic and Cell Division, Centre National de la Recherche Scientifique (CNRS)-CentraleSupélec-Université Paris-Sud - Paris 11 (UP11), McGill University = Université McGill [Montréal, Canada], Service d'Anatomie et Cytologie Pathologique [CHU Rouen], Centre National de la Recherche Scientifique (CNRS)-Institut de Biologie Paris Seine (IBPS), Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Centre National de la Recherche Scientifique (CNRS), Signaling in Oncogenesis, Angiogenesis and Permeability (CRCINA-ÉQUIPE 15), Centre de Recherche en Cancérologie et Immunologie Nantes-Angers (CRCINA), Institut National de la Santé et de la Recherche Médicale (INSERM)-Université de Nantes - UFR de Médecine et des Techniques Médicales (UFR MEDECINE), Université de Nantes (UN)-Université de Nantes (UN)-Centre hospitalier universitaire de Nantes (CHU Nantes)-Centre National de la Recherche Scientifique (CNRS)-Université d'Angers (UA)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université de Nantes - UFR de Médecine et des Techniques Médicales (UFR MEDECINE), Université de Nantes (UN)-Université de Nantes (UN)-Centre hospitalier universitaire de Nantes (CHU Nantes)-Centre National de la Recherche Scientifique (CNRS)-Université d'Angers (UA), Universidad de Chile = University of Chile [Santiago] (UCHILE), Centro de Investigacion Biomédica en Red sobre Enfermedades Neurodegenerativas (CIBERNED), Instituto de Salud Carlos III (ISC), Université Montpellier 1 (UM1)-CRLCC Val d'Aurelle - Paul Lamarque-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université de Montpellier (UM), Aix Marseille Université (AMU)-Collège de France (CdF (institution))-Centre National de la Recherche Scientifique (CNRS), Université Panthéon-Sorbonne (UP1)-École pratique des hautes études (EPHE)-Centre National de la Recherche Scientifique (CNRS)-Sorbonne Université (SU)-Collège de France (CdF (institution)), Université Pierre et Marie Curie - Paris 6 (UPMC)-École pratique des hautes études (EPHE)-Université Paris Diderot - Paris 7 (UPD7)-Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM), Great Ormond Street Hospital for Children [London] (GOSH)-Institute of Child Health, Hokkaido University [Sapporo, Japan], Université Paris sciences et lettres (PSL), Institut National de la Recherche Agronomique (INRA)-Université Toulouse III - Paul Sabatier (UT3), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Ecole Nationale Vétérinaire de Toulouse (ENVT), Université Fédérale Toulouse Midi-Pyrénées-Ecole d'Ingénieurs de Purpan (INPT - EI Purpan), Université de Lyon-Université de Lyon, Centre d’Infection et d’Immunité de Lille (CIIL) - INSERM U1019 - UMR 9017 (CIIL), Réseau International des Instituts Pasteur (RIIP)-Réseau International des Instituts Pasteur (RIIP)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université de Lille-Centre Hospitalier Régional Universitaire [Lille] (CHRU Lille)-Centre National de la Recherche Scientifique (CNRS), Organisation Nucléaire et Oncogenèse - Nuclear Organization and Oncogenesis, Université Paris Diderot - Paris 7 (UPD7)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Centre de Recherche en Cancérologie de Lyon (UNICANCER/CRCL), Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Centre Léon Bérard [Lyon], Centre National de la Recherche Scientifique (CNRS)-Institut de biologie physico-chimique (IBPC (FR_550)), Centre National de la Recherche Scientifique (CNRS)-Centre National de la Recherche Scientifique (CNRS)-Sorbonne Université (SU), The Beatson Institute for Cancer Research, Beijing Normal University (BNU), Institut National des Sciences Appliquées (INSA)-Université de Rennes (UNIV-RENNES)-Institut National des Sciences Appliquées (INSA)-Ecole Nationale Supérieure de Chimie de Rennes-Centre National de la Recherche Scientifique (CNRS), Centre National de la Recherche Scientifique (CNRS)-Fédération de Recherche Bézout-ESIEE Paris-École des Ponts ParisTech (ENPC)-Université Paris-Est Marne-la-Vallée (UPEM), COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA), Université de Lyon-Université de Lyon-Centre de Recherche en Cancérologie de Lyon (UNICANCER/CRCL), Université de Lyon-Université de Lyon-Centre Léon Bérard [Lyon]-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Centre Léon Bérard [Lyon], Vall d’Hebron Research Institute (VHIR), Institut Curie [Paris]-Institut National de la Santé et de la Recherche Médicale (INSERM), Universidade Nova de Lisboa = NOVA University of Lisboa (NOVA), Université de Montpellier (UM)-Centre international d'études supérieures en sciences agronomiques (Montpellier SupAgro)-Institut national d’études supérieures agronomiques de Montpellier (Montpellier SupAgro), Institut national d'enseignement supérieur pour l'agriculture, l'alimentation et l'environnement (Institut Agro)-Institut national d'enseignement supérieur pour l'agriculture, l'alimentation et l'environnement (Institut Agro)-Institut National de la Recherche Agronomique (INRA)-Centre National de la Recherche Scientifique (CNRS), Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-École normale supérieure - Lyon (ENS Lyon)-Université Claude Bernard Lyon 1 (UCBL), Doshisha University [Kyoto], Université européenne de Bretagne - European University of Brittany (UEB)-Télécom Bretagne-Institut Mines-Télécom [Paris] (IMT), Università degli Studi di Firenze = University of Florence [Firenze], University of Zaragoza - Universidad de Zaragoza [Zaragoza]-Nanoscience Institute of Aragon - INA [Zaragoza, Spain]-Fundación Agencia Aragonesa para la Investigación y el Desarrollo - ARAID [Zaragoza, Spain], Central China Normal University [Wuhan, China], Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay-UMR E4320 (TIRO-MATOs), COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Nice Sophia Antipolis (... - 2019) (UNS), COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA), Université Pierre et Marie Curie - Paris 6 (UPMC)-École pratique des hautes études (EPHE)-Université Paris Diderot - Paris 7 (UPD7)-Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Pierre et Marie Curie - Paris 6 (UPMC)-École pratique des hautes études (EPHE)-Université Paris Diderot - Paris 7 (UPD7)-Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Institut Claudius Regaud, Assistance publique - Hôpitaux de Paris (AP-HP) (AP-HP), Institut de biologie structurale [1992-2019] (IBS - UMR 5075 [1992-2019]), Université Grenoble Alpes [2016-2019] (UGA [2016-2019])-Centre National de la Recherche Scientifique (CNRS)-Institut de Recherche Interdisciplinaire de Grenoble (IRIG), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Centre de Biologie Intégrative (CBI), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Centre National de la Recherche Scientifique (CNRS)-Centre National de la Recherche Scientifique (CNRS), Nanjing University of Information Science and Technology (NUIST), Facultad de Medicina [Buenos Aires], Universidad de Buenos Aires [Buenos Aires] (UBA)-Universidad de Buenos Aires [Buenos Aires] (UBA)-Consejo Nacional de Investigaciones Científicas y Técnicas [Buenos Aires] (CONICET), Université de Technologie de Belfort-Montbeliard (UTBM)-Ecole Nationale Supérieure de Mécanique et des Microtechniques (ENSMM)-Centre National de la Recherche Scientifique (CNRS)-Université de Franche-Comté (UFC), Université Clermont Auvergne (UCA)-Institut National de la Recherche Agronomique (INRA), Réseau International des Instituts Pasteur (RIIP)-Réseau International des Instituts Pasteur (RIIP)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université de Lille, Droit et Santé-Centre Hospitalier Régional Universitaire [Lille] (CHRU Lille), Consejo Nacional de Investigaciones Científicas y Técnicas [Buenos Aires] (CONICET)-Universidad Nacional de San Martin (UNSAM), Université Savoie Mont Blanc (USMB [Université de Savoie] [Université de Chambéry])-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Université Jean Monnet [Saint-Étienne] (UJM), Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Centre National de la Recherche Scientifique (CNRS), Aix Marseille Université (AMU)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Réseau International des Instituts Pasteur (RIIP)-Réseau International des Instituts Pasteur (RIIP)-Centre National de la Recherche Scientifique (CNRS)-Centre Hospitalier Régional Universitaire [Lille] (CHRU Lille)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université de Lille, George Mason University [Fairfax]-Center for Applied Proteomics and Molecular Medicine, Institut National de la Recherche Agronomique (INRA)-Centre international d'études supérieures en sciences agronomiques (Montpellier SupAgro)-Université de Montpellier (UM)-Centre National de la Recherche Scientifique (CNRS)-Institut national d’études supérieures agronomiques de Montpellier (Montpellier SupAgro), Institut national d'enseignement supérieur pour l'agriculture, l'alimentation et l'environnement (Institut Agro)-Institut national d'enseignement supérieur pour l'agriculture, l'alimentation et l'environnement (Institut Agro), Institute of Infection, Immunity and Inflammation [Glasgow, UK]-University of Glasgow, Centre National de la Recherche Scientifique (CNRS)-Université Paris Diderot - Paris 7 (UPD7)-Université Pierre et Marie Curie - Paris 6 (UPMC), Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut de Biologie Paris Seine (IBPS), Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Centre National de la Recherche Scientifique (CNRS)-Université Grenoble Alpes [2016-2019] (UGA [2016-2019])-Institut de Recherche Interdisciplinaire de Grenoble (IRIG), Université Paris-Sud - Paris 11 (UP11)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS), Centre National de la Recherche Scientifique (CNRS)-AgroSup Dijon - Institut National Supérieur des Sciences Agronomiques, de l'Alimentation et de l'Environnement-Institut National de la Recherche Agronomique (INRA)-Université de Bourgogne (UB), Université Fédérale Toulouse Midi-Pyrénées-Institut de Recherche pour le Développement (IRD)-Centre National de la Recherche Scientifique (CNRS)-Centre National de la Recherche Scientifique (CNRS), Université de Bordeaux (UB)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Université de Rouen Normandie (UNIROUEN), Normandie Université (NU)-Normandie Université (NU)-CHU Rouen, Institut National de la Santé et de la Recherche Médicale (INSERM)-Institut Gustave Roussy (IGR)-Université Paris-Sud - Paris 11 (UP11), Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Institut National de la Santé et de la Recherche Médicale (INSERM)-Institut Pasteur [Paris], Centre Léon Bérard [Lyon]-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Université de Lyon-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Centre Léon Bérard [Lyon]-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut de Biologie Paris Seine (IBPS), Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Université Fédérale Toulouse Midi-Pyrénées-Université Fédérale Toulouse Midi-Pyrénées-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS), Centre National de la Recherche Scientifique (CNRS)-Université de Montpellier (UM), and Centre National de la Recherche Scientifique (CNRS)-Université Paris Descartes - Paris 5 (UPD5)-Institut National de la Santé et de la Recherche Médicale (INSERM)
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0301 basic medicine ,Settore BIO/06 ,biology ,Cell Biology ,[SDV.BC]Life Sciences [q-bio]/Cellular Biology ,biology.organism_classification ,Cell biology ,Interpretation (model theory) ,03 medical and health sciences ,Arama ,030104 developmental biology ,Molecular Biology ,Humanities ,ComputingMilieux_MISCELLANEOUS - Abstract
Author(s): Klionsky, DJ; Abdelmohsen, K; Abe, A; Abedin, MJ; Abeliovich, H; Arozena, AA; Adachi, H; Adams, CM; Adams, PD; Adeli, K; Adhihetty, PJ; Adler, SG; Agam, G; Agarwal, R; Aghi, MK; Agnello, M; Agostinis, P; Aguilar, PV; Aguirre-Ghiso, J; Airoldi, EM; Ait-Si-Ali, S; Akematsu, T; Akporiaye, ET; Al-Rubeai, M; Albaiceta, GM; Albanese, C; Albani, D; Albert, ML; Aldudo, J; Algul, H; Alirezaei, M; Alloza, I; Almasan, A; Almonte-Beceril, M; Alnemri, ES; Alonso, C; Altan-Bonnet, N; Altieri, DC; Alvarez, S; Alvarez-Erviti, L; Alves, S; Amadoro, G; Amano, A; Amantini, C; Ambrosio, S; Amelio, I; Amer, AO; Amessou, M; Amon, A; An, Z; Anania, FA; Andersen, SU; Andley, UP; Andreadi, CK; Andrieu-Abadie, N; Anel, A; Ann, DK; Anoopkumar-Dukie, S; Antonioli, M; Aoki, H; Apostolova, N; Aquila, S; Aquilano, K; Araki, K; Arama, E; Aranda, A; Araya, J; Arcaro, A; Arias, E; Arimoto, H; Ariosa, AR; Armstrong, JL; Arnould, T; Arsov, I; Asanuma, K; Askanas, V; Asselin, E; Atarashi, R; Atherton, SS; Atkin, JD; Attardi, LD; Auberger, P; Auburger, G; Aurelian, L; Autelli, R
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- 2016
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28. HSP90 inhibition by 17-DMAG attenuates oxidative stress in experimental atherosclerosis
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Luis Miguel Blanco-Colio, Carmen Gomez-Guerrero, Begoña Muñoz-García, Carlos Ernesto Fernandez-Garcia, Jesús Egido, José Luis Martín-Ventura, Julio Madrigal-Matute, and Oscar Lopez-Franco
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Male ,MAPK/ERK pathway ,Physiology ,Lactams, Macrocyclic ,Inflammation ,medicine.disease_cause ,Muscle, Smooth, Vascular ,Mice ,Hsp27 ,Physiology (medical) ,Benzoquinones ,medicine ,Animals ,HSP90 Heat-Shock Proteins ,Rats, Wistar ,Extracellular Signal-Regulated MAP Kinases ,Protein kinase A ,NADPH oxidase ,biology ,Macrophages ,Monocyte ,NADPH Oxidases ,Cell Differentiation ,Atherosclerosis ,Rats ,Cell biology ,Oxidative Stress ,medicine.anatomical_structure ,Biochemistry ,NOX1 ,cardiovascular system ,biology.protein ,medicine.symptom ,Reactive Oxygen Species ,Cardiology and Cardiovascular Medicine ,Oxidative stress - Abstract
Aims Reactive oxygen species (ROS) participate in atherogenesis through different mechanisms including oxidative stress and inflammation. Proteins implicated in both processes, such as mitogen-activated protein kinase kinase (MEK) and some NADPH oxidase (NOX) subunits, are heat shock protein-90 (HSP90) client proteins. In this work, we investigated the antioxidant properties of the HSP90 inhibitor, 17-dimethylaminoethylamino-17-demethoxygeldanamycin (17-DMAG) in experimental atherosclerosis. Methods and results Treatment of ApoE−/− mice with 17-DMAG (2 mg/kg every 2 days for 10 weeks) decreased ROS levels and extracellular signal-regulated kinase (ERK) activation in aortic plaques compared with control animals. Accordingly, treatment of rat vascular smooth muscle cells (VSMCs) with 17-DMAG increased HSP27 and HSP70 and inhibited ERK activation. Interestingly, 17-DMAG diminished NADPH oxidase dependent ROS production in VSMCs and monocytes. In addition, a marked reduction in NADPH oxidase dependent ROS production was observed with HSP90siRNA and the opposite pattern with HSP70siRNA. 17-DMAG also diminished the expression of Nox1 and Nox organizer-1 (Noxo1) in VSMCs and monocytes. Interestingly, 17-DMAG was able to modulate ROS-induced monocyte to macrophage differentiation. Finally, higher expression of Nox1 and Noxo1 was found in the inflammatory region of human atherosclerotic plaques, colocalizing with VSMCs, macrophages, and ROS-producing cells. Conclusion Our results suggest that HSP90 inhibitors interfere with oxidative stress and modulate experimental atherosclerosis development through reduction in pro-oxidative factors.
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- 2012
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29. TWEAK or FN14 insufficiency inhibits neointimal hyperplasia through reduction of CYCLIN/CDKS expression and impaired vascular smooth muscle cells proliferation
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Julio Madrigal-Matute, Pablo Minguez, Carmen Gutiérrez-Muñoz, J.L. Martin-Ventura, L.M. Blanco-Colio, Nerea Méndez-Barbero, Vanesa Esteban, and Jesús Egido
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Neointimal hyperplasia ,Vascular smooth muscle ,biology ,Cyclin-dependent kinase ,Chemistry ,medicine.medical_treatment ,biology.protein ,medicine ,Cancer research ,Cardiology and Cardiovascular Medicine ,medicine.disease ,Reduction (orthopedic surgery) ,Cyclin - Published
- 2018
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30. P360TWEAK or Fn14 insufficiency inhibits neointimal hyperplasia through reduction of Cyclin/CDKs expression and impaired vascular smooth muscle cells proliferation
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Pablo Minguez, Jesús Egido, Carmen Gutiérrez-Muñoz, Nerea Méndez-Barbero, Julio Madrigal-Matute, V Esteban, Luis Miguel Blanco-Colio, and J.L. Martin-Ventura
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Neointimal hyperplasia ,Vascular smooth muscle ,biology ,Physiology ,Chemistry ,medicine.medical_treatment ,medicine.disease ,Cyclin-dependent kinase ,Physiology (medical) ,biology.protein ,medicine ,Cancer research ,Cardiology and Cardiovascular Medicine ,Reduction (orthopedic surgery) ,Cyclin - Published
- 2018
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31. Heat shock protein 90 inhibitors attenuate inflammatory responses in atherosclerosis
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Luis Miguel Blanco-Colio, Luis Ortega, Oscar Lopez-Franco, Begoña Muñoz-García, Julio Madrigal-Matute, José Luis Martín-Ventura, Jesús Egido, and Priscila Ramos-Mozo
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Male ,medicine.medical_specialty ,Chemokine ,Physiology ,Lactams, Macrocyclic ,medicine.medical_treatment ,Myocytes, Smooth Muscle ,Anti-Inflammatory Agents ,Inflammation ,Pharmacology ,Muscle, Smooth, Vascular ,Proinflammatory cytokine ,Mice ,Apolipoproteins E ,Physiology (medical) ,Internal medicine ,Heat shock protein ,Benzoquinones ,medicine ,Animals ,Humans ,HSP70 Heat-Shock Proteins ,HSP90 Heat-Shock Proteins ,Heat shock ,Cells, Cultured ,Aged ,Mice, Knockout ,Dose-Response Relationship, Drug ,biology ,Macrophages ,Monocyte ,NF-kappa B ,Middle Aged ,Atherosclerosis ,Hsp90 ,STAT Transcription Factors ,Endocrinology ,Cytokine ,medicine.anatomical_structure ,biology.protein ,Cytokines ,Female ,Inflammation Mediators ,medicine.symptom ,Cardiology and Cardiovascular Medicine - Abstract
Aims Heat shock protein 90 (HSP90) is a ubiquitous chaperone involved in the folding, activation, and assembly of many proteins. HSP90 inhibitors [17-allylamino-17-demethoxygeldamycin (17-AAG)/17-dimethyl aminothylamino-17-demethoxygeldanamycin hydrochloride (17-DMAG)] bind to and inactivate HSP90, increasing the heat shock response and suppressing different signalling pathways. We aim to investigate the effect of HSP90 inhibitors in the modulation of inflammatory responses during atherogenesis. Methods and results In human atherosclerotic plaques, HSP90 immunostaining was increased in inflammatory regions and in plaques characterized by lower cap thickness. In cultured human macrophages and vascular smooth muscle cells, treatment with either 17-AAG or 17-DMAG increased HSP70 expression and reduced transcription factor [signal transducers and activators of transcription (STAT) and nuclear factor-κB (NF-κB)] activation and chemokine expression induced by proinflammatory cytokines. In vivo , hyperlipidaemic ApoE−/− mice were randomized to 17-DMAG (2 mg/kg every 2 days, n = 11) or vehicle injected ( n = 9) during 10 weeks. Atherosclerotic plaques of mice treated with 17-DMAG displayed increased HSP70 expression and diminished NF-κB and STAT activation, along with decreased lesion, lipid, and macrophage content, compared with vehicle-injected mice. In addition, treatment with 17-DMAG significantly reduced monocyte chemoattractant protein-1 levels, both in plaques and in plasma. Conclusion HSP90 expression is associated with features of plaque instability in advanced human lesions. HSP90 inhibitors reduce inflammatory responses in atherosclerosis, suggesting that HSP90 could be a novel therapeutic target in atherosclerosis.
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- 2010
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32. The CD163-expressing macrophages recognize and internalize TWEAK
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Luis Ortega, José Luis Martín-Ventura, Jesús Egido, Begoña Muñoz-García, Luis Miguel Blanco-Colio, José A. Páramo, Julio Madrigal-Matute, Juan Antonio Moreno, and Josune Orbe
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medicine.medical_specialty ,business.industry ,Carotid ultrasonography ,Endocrinology ,medicine.anatomical_structure ,Internal medicine ,Immunology ,Medicine ,Macrophage ,Tumor necrosis factor alpha ,Scavenger receptor ,Cardiology and Cardiovascular Medicine ,business ,Receptor ,CD163 ,Cytokine TWEAK ,Blood vessel - Abstract
Background CD163 is a new potential scavenger receptor of Tumor necrosis factor-like weak inducer of apoptosis (TWEAK) which elicits diverse biologic actions involved in atherosclerosis. We have analyzed the importance of TWEAK–CD163 interaction in atherosclerosis. Methods TWEAK and CD163 interaction was studied in cultured human macrophages. Moreover, TWEAK and CD163 expression was analyzed in carotid atherosclerotic plaques (immunohistochemistry) and plasma (ELISA). We have also assessed their potential association with intima/media thickness (IMT) in asymptomatic subjects. Results In vitro studies revealed that CD163-expressing macrophages can bind and internalize TWEAK protein exogenously added from supernatants. Accordingly, we observed an inverse correlation between the expression of CD163 and TWEAK ( r =−0.51; p =0.008) in the shoulder region of atherosclerotic plaques obtained from 25 patients undergoing carotid endarterectomy. The same trend was observed when we analyzed the plasma concentration of both proteins in 90 subjects free from clinical cardiovascular disease ( r =−0.25; p =0.016) in which carotid ultrasonography was performed to determine IMT. In these subjects, we found a positive correlation between sCD163 and IMT ( r =0.36; p r =0.51; p Conclusions Our results suggest that TWEAK–CD163 interaction takes place in vivo, probably decreasing TWEAK plasma concentration. Furthermore, we have observed that CD163–TWEAK plasma ratio is a potential biomarker of clinical and subclinical atherosclerosis.
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- 2009
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33. Las proteínas de choque térmico (heat shock proteins) como potenciales dianas terapéuticas en aterosclerosis
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Oscar Lopez-Franco, Jean-Baptiste Michel, Priscila Ramos-Mozo, Begoña Muñoz-García, Melany Van Oostrom, Olivier Meilhac, Jesús Egido, Julio Madrigal-Matute, Luis Miguel Blanco-Colio, and Jose Luis Martin Ventura
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Pharmacology (medical) ,Cardiology and Cardiovascular Medicine - Abstract
Las heat shock proteins (HSP) son una familia de proteinas que se producen en grandes cantidades por la mayoria de las celulas como respuesta al estres. Las HSP se localizan tanto en arterias sanas, como en placas ateroscleroticas, aunque su papel en la aterosclerosis esta aun por definir. En el presente estudio, nuestro objetivo fue analizar el efecto de la modulacion de las HSP en procesos involucrados en la formacion de la placa de ateroma, como el estres oxidativo, la inflamacion y la apoptosis. Para ello, hemos usado un inhibidor de la HSP90 (17-AAG), el cual es capaz de inducir un aumento en los valores de expresion de la HSP70/HSP27. Inicialmente, hemos observado que el tratamiento con 17-AAG es capaz de reducir la actividad de la NAD(P)H oxidasa inducida por factor de necrosis tumoral alfa. Asimismo, el tratamiento modulo distintas vias de senalizacion proliferativas (p. ej., MAPK), asi como la activacion del factor nuclear kappa B (NF-?B) inducidas por un cocktail de citocinas (interferon gamma/interleucina 6 [IL-6]). En estas condiciones, se observo una disminucion en los niveles de citocinas proinflamatorias (p. ej., IL-6). Por ultimo, mientras el tratamiento con 17-AAG provoco una disminucion en la apoptosis despues de la incubacion con diversos estimulos proapoptoticos, la inhibicion de la HSP27 mediante transfeccion con un siARN especifico aumento la apoptosis celular inducida por elastasa. Estos resultados indican que la modulacion de los valores de ciertas HSP puede representar una nueva aproximacion terapeutica en el tratamiento de enfermedades inflamatorio-proliferativas como la aterosclerosis.
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- 2009
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34. Biomarcadores en la medicina cardiovascular
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Jesús Egido, Julio Madrigal-Matute, Juan Antonio Moreno, Luis Miguel Blanco-Colio, José Tuñón, José Luis Martín-Ventura, Begoña Muñoz-García, and Melina Vega de Ceniga
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business.industry ,Medicine ,Cardiology and Cardiovascular Medicine ,business ,Humanities - Abstract
Las enfermedades cardiovasculares son la primera causa de muerte en el mundo occidental. El proceso patologico que subyace a ellas es un engrosamiento de la pared arterial debido a la formacion de placas ateroscleroticas, las cuales se complican frecuentemente con un trombo y pueden dar lugar a sindrome coronario agudo o accidente cerebrovascular. Uno de los mayores retos de la medicina cardiovascular es encontrar la manera de predecir el riesgo de un sujeto de sufrir un evento trombotico agudo. En las ultimas decadas, hay un gran interes en la busqueda de biomarcadores diagnosticos y pronosticos que puedan ser identificados en sangre. Entre ellos, la proteina C reactiva es la mas conocida. Otros, como el ligando de CD40 soluble, pueden predecir eventos cardiovasculares. En cambio, hasta el momento no hay un biomarcador aceptado en la practica clinica. Actualmente, existen diversas tecnicas de alto rendimiento como la proteomica, que permite la deteccion de multiples biomarcadores potenciales. Estas aproximaciones pueden identificar en un futuro proximo nuevos biomarcadores que, junto con las tecnicas de imagen, pueden ayudar a mejorar la prediccion de eventos vasculares agudos.
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- 2009
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35. Increased CD74 expression in human atherosclerotic plaques: contribution to inflammatory responses in vascular cells
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Carmen Gomez-Guerrero, Luis Ortega, Javier Díez, Luis Miguel Blanco-Colio, José Luis Martín-Ventura, Alberto Ortiz, Guillermo Zalba, Jesús Egido, Begoña Muñoz-García, Melany Van Oostrom, Ana Fortuño, and Julio Madrigal-Matute
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Pathology ,Time Factors ,Vascular smooth muscle ,Physiology ,Severity of Illness Index ,Muscle, Smooth, Vascular ,Gene expression ,Carotid Stenosis ,Cells, Cultured ,Chemokine CCL2 ,Endarterectomy, Carotid ,NF-kappa B ,Recombinant Proteins ,Up-Regulation ,Carotid Arteries ,medicine.anatomical_structure ,RNA Interference ,Inflammation Mediators ,medicine.symptom ,Tunica Media ,Cardiology and Cardiovascular Medicine ,Blood vessel ,medicine.medical_specialty ,Myocytes, Smooth Muscle ,Inflammation ,Transfection ,Peripheral blood mononuclear cell ,Proinflammatory cytokine ,Interferon-gamma ,Physiology (medical) ,Internal medicine ,Carotid stenosis ,medicine ,Humans ,Tumor Necrosis Factor-alpha ,business.industry ,Macrophages ,Monocyte ,Histocompatibility Antigens Class II ,Atherosclerosis ,medicine.disease ,Fibrosis ,Antigens, Differentiation, B-Lymphocyte ,Endocrinology ,Atheroma ,Case-Control Studies ,Leukocytes, Mononuclear ,Tunica Intima ,business ,Biomarkers - Abstract
AIMS: The purpose of this study was to analyse the expression of CD74 in human atherosclerotic plaques and peripheral blood mononuclear cells (PBMC) as well as its potential participation in proinflammatory responses in cultured human vascular smooth muscle cells (VSMC). METHODS AND RESULTS: CD74 expression was analysed in human atherosclerotic plaques (immunohistochemistry), PBMC (real-time PCR), and human aortic VSMC (real-time PCR and western blotting). Nuclear factor-kappaB (NF-kappaB) activation was assessed by southwestern histochemistry and electrophoretic mobility shift assay. Monocyte chemoattractant protein-1 (MCP-1) levels were studied by both real-time PCR and enzyme-linked immunosorbent assay. CD74 immunostaining was increased in the inflammatory vs. the fibrous region of atherosclerotic plaques (n = 70, 18.2 +/- 1.3 vs. 7.8 +/- 0.6% positive staining/mm2, P < 0.001). CD74 colocalized with the transcription factor NF-kappaB in both VSMC and macrophages. In cultured VSMC, CD74 expression was induced by interferon gamma (IFNgamma). Incubation with an agonistic anti-CD74 antibody or with IFNgamma elicited MCP-1 expression, which was prevented by AKT and gamma-secretase inhibitors. Moreover, CD74 small-interfering RNA decreased NF-kappaB activation and MCP-1 production induced by IFNgamma in VSMC. Finally, CD74 mRNA levels in PBMC from patients with carotid stenosis were higher than in healthy subjects (n = 20, 3 +/- 0.5 vs. 2 +/- 0.5 AU, P < 0.001). Additionally, a linear trend between CD74 mRNA expression tertiles and intima-media thickness (IMT) was observed in PBMC from asymptomatic subjects (n = 185, P < 0.001). CONCLUSION: CD74 levels are increased in plaques and PBMC from patients with carotid stenosis and are associated with IMT in subjects free from clinical cardiovascular diseases. CD74 could be a novel therapeutic target to decrease the inflammatory response in atherosclerosis.
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- 2009
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36. Lanosterol Modulates TLR4-Mediated Innate Immune Responses in Macrophages
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Julio Madrigal-Matute, Dianqing Wu, Wenwen Tang, Carlos Fernández-Hernando, Alberto Canfrán-Duque, Yajaira Suárez, Gary W. Cline, Jordan S. Pober, Miguel A. Lasunción, Elisa Araldi, and Marta Fernández-Fuertes
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0301 basic medicine ,Down-Regulation ,Mice, Transgenic ,macrophage ,Biology ,Cyp51A1 ,General Biochemistry, Genetics and Molecular Biology ,Article ,03 medical and health sciences ,chemistry.chemical_compound ,Gene Knockout Techniques ,Lanosterol ,Mice ,Sterol 14-Demethylase ,Interferon ,medicine ,polycyclic compounds ,Macrophage ,Animals ,Humans ,TLR4 ,innate immunity ,lcsh:QH301-705.5 ,Innate immune system ,lanosterol ,Macrophages ,HDAC1 ,Immunity, Innate ,Cell biology ,Mice, Inbred C57BL ,Toll-Like Receptor 4 ,030104 developmental biology ,chemistry ,lcsh:Biology (General) ,STAT protein ,Cytokine secretion ,lipids (amino acids, peptides, and proteins) ,Female ,medicine.drug - Abstract
Summary Macrophages perform critical functions in both innate immunity and cholesterol metabolism. Here, we report that activation of Toll-like receptor 4 (TLR4) in macrophages causes lanosterol, the first sterol intermediate in the cholesterol biosynthetic pathway, to accumulate. This effect is due to type I interferon (IFN)-dependent histone deacetylase 1 (HDAC1) transcriptional repression of lanosterol-14α-demethylase, the gene product of Cyp51A1 . Lanosterol accumulation in macrophages, because of either treatment with ketoconazole or induced conditional disruption of Cyp51A1 in mouse macrophages in vitro, decreases IFNβ-mediated signal transducer and activator of transcription (STAT)1-STAT2 activation and IFNβ-stimulated gene expression. These effects translate into increased survival to endotoxemic shock by reducing cytokine secretion. In addition, lanosterol accumulation increases membrane fluidity and ROS production, thus potentiating phagocytosis and the ability to kill bacteria. This improves resistance of mice to Listeria monocytogenes infection by increasing bacterial clearance in the spleen and liver. Overall, our data indicate that lanosterol is an endogenous selective regulator of macrophage immunity.
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- 2015
37. Regulation of Liver Metabolism by Autophagy
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Ana Maria Cuervo and Julio Madrigal-Matute
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0301 basic medicine ,Mitochondria, Liver ,Mitochondrion ,Biology ,Mitochondrial Dynamics ,Article ,03 medical and health sciences ,Chaperone-mediated autophagy ,Metabolic Diseases ,Lysosome ,medicine ,Autophagy ,Animals ,Humans ,Mechanistic target of rapamycin ,PI3K/AKT/mTOR pathway ,Hepatology ,Fatty liver ,Gastroenterology ,medicine.disease ,Cell biology ,030104 developmental biology ,medicine.anatomical_structure ,Biochemistry ,Liver ,biology.protein ,TFEB ,Energy Metabolism ,Lysosomes - Abstract
Intracellular components must be recycled for cells to maintain energy and ensure quality control of proteins and organelles. Autophagy is a highly conserved recycling process that involves degradation of cellular constituents in lysosomes. Although autophagy regulates a number of cell functions, it was first found to maintain energy balance in liver cells. As our understanding of autophagy has increased, we have found its connections to energy regulation in liver cells to be tight and complex. We review three mechanisms by which hepatic autophagy monitors and regulates cellular metabolism. Autophagy provides essential components (amino acids, lipids and carbohydrates) required to meet the cell’s energy needs, and it also regulates energy supply by controlling the number, quality, and dynamics of the mitochondria. Lastly, autophagy also modulates levels of enzymes in metabolic pathways. In light of the multiple ways in which autophagy participates to control liver metabolism, it is no surprise that dysregulation of autophagy has been associated with metabolic diseases such as obesity, diabetes, or metabolic syndrome, as well as liver-specific disorders such as fatty liver, non-alcoholic steatohepatitis and hepatocellular carcinoma. We discuss some of these connections and how hepatic autophagy might serve as a therapeutic target in common metabolic disorders.
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- 2015
38. Targeting HSP90 Ameliorates Nephropathy and Atherosclerosis Through Suppression of NF-κB and STAT Signaling Pathways in Diabetic Mice
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Carmen Gomez-Guerrero, Julio Madrigal-Matute, Beñat Mallavia, Jesús Egido, Carlota Recio, Iolanda Lázaro, José Luis Martín-Ventura, Julia Blanco, and Ainhoa Oguiza
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medicine.medical_specialty ,Endocrinology, Diabetes and Metabolism ,Lactams, Macrocyclic ,Biology ,stat ,Proinflammatory cytokine ,Nephropathy ,Diabetes Mellitus, Experimental ,Lethal Dose 50 ,chemistry.chemical_compound ,Mice ,Random Allocation ,Apolipoproteins E ,Fibrosis ,Heat shock protein ,Diabetes mellitus ,Internal medicine ,Internal Medicine ,medicine ,Benzoquinones ,Animals ,Diabetic Nephropathies ,HSP70 Heat-Shock Proteins ,HSP90 Heat-Shock Proteins ,RNA, Messenger ,Mice, Knockout ,NF-kappa B ,NF-κB ,medicine.disease ,Atherosclerosis ,Hsp70 ,STAT Transcription Factors ,Endocrinology ,chemistry ,Gene Expression Regulation ,Cancer research - Abstract
Heat shock proteins (HSPs) are induced by cellular stress and function as molecular chaperones that regulate protein folding. Diabetes impairs the function/expression of many HSPs, including HSP70 and HSP90, key regulators of pathological mechanisms involved in diabetes complications. Therefore, we investigated whether pharmacological HSP90 inhibition ameliorates diabetes-associated renal damage and atheroprogression in a mouse model of combined hyperglycemia and hyperlipidemia (streptozotocin-induced diabetic apolipoprotein E–deficient mouse). Treatment of diabetic mice with 17-dimethylaminoethylamino-17-demethoxygeldanamycin (DMAG, 2 and 4 mg/kg, 10 weeks) improved renal function, as evidenced by dose-dependent decreases in albuminuria, renal lesions (mesangial expansion, leukocyte infiltration, and fibrosis), and expression of proinflammatory and profibrotic genes. Furthermore, DMAG significantly reduced atherosclerotic lesions and induced a more stable plaque phenotype, characterized by lower content of lipids, leukocytes, and inflammatory markers, and increased collagen and smooth muscle cell content. Mechanistically, the renoprotective and antiatherosclerotic effects of DMAG are mediated by the induction of protective HSP70 along with inactivation of nuclear factor-κB (NF-κB) and signal transducers and activators of transcription (STAT) and target gene expression, both in diabetic mice and in cultured cells under hyperglycemic and proinflammatory conditions. In conclusion, HSP90 inhibition by DMAG restrains the progression of renal and vascular damage in experimental diabetes, with potential implications for the prevention of diabetes complications.
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- 2014
39. TWEAK/Fn14 interaction promotes oxidative stress through NADPH oxidase activation in macrophages
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Jesús Egido, Luis Miguel Blanco-Colio, Patricia Llamas-Granda, José Luis Martín-Ventura, Julio Madrigal-Matute, Valvanera Fernández-Laso, Guillermo Zalba, and Cristina Sastre
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Carotid Artery Diseases ,rac1 GTP-Binding Protein ,Physiology ,RAC1 ,Inflammation ,medicine.disease_cause ,Receptors, Tumor Necrosis Factor ,Mice ,Mediator ,Physiology (medical) ,medicine ,Macrophage ,Animals ,Humans ,Cells, Cultured ,NADPH oxidase ,biology ,Macrophages ,NADPH Oxidases ,Cytokine TWEAK ,Glutathione ,Cell biology ,Enzyme Activation ,Oxidative Stress ,Biochemistry ,TWEAK Receptor ,Tumor Necrosis Factors ,biology.protein ,P22phox ,medicine.symptom ,Cardiology and Cardiovascular Medicine ,TNFSF12 ,Oxidative stress - Abstract
Aim The interaction between TNF-like weak inducer of apoptosis (TWEAK, Tnfsf12 ) and the receptor, fibroblast growth factor-inducible 14 (Fn14), regulates vascular damage through different mechanisms, including inflammation. Oxidative stress plays a major role in inflammation and the development of atherosclerosis, but the relationship between TWEAK and oxidative stress is, however, poorly understood. Methods and results In this study, we found that TWEAK and Fn14 are co-localized with the NADPH subunits, p22phox and Nox2, in human advanced atherosclerotic plaques. Using primary human macrophages and a murine macrophage cell line, we demonstrate that TWEAK promotes ROS production and enhances NADPH oxidase activity. Hence, we show a direct involvement of the TWEAK-Fn14 axis in oxidative stress, as genetic silencing of Fn14 or Nox2 abrogates the TWEAK-induced ROS production. Furthermore, our results point at Rac1 as an upstream mediator of TWEAK during oxidative stress. Finally, using an in vivo murine model we confirmed the major role of TWEAK in oxidative stress, as genetic silencing of Tnfsf12 in an ApoE −/− background reduces the number of DHE and 8-hydroxydeoxyguanosine-positive macrophages by 50%. Conclusions Our results suggest that TWEAK regulates vascular damage by stimulating ROS production in an Nox2-dependent manner. These new insights into the TWEAK/Fn14 axis underline their potential use as therapeutic targets in atherosclerosis.
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- 2014
40. Tumor Necrosis Factor−Like Weak Inducer of Apoptosis or Fn14 Deficiency Reduce Elastase Perfusion−Induced Aortic Abdominal Aneurysm in Mice
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JOSE LUIS MARTIN-VENTURA and Julio Madrigal-Matute
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Pathology ,medicine.medical_specialty ,business.industry ,Elastase ,Corrections ,Apoptosis ,Immunology ,Medicine ,Inducer ,Tumor necrosis factor alpha ,Abdominal aneurysm ,Cardiology and Cardiovascular Medicine ,business ,Perfusion - Abstract
In the article by Tarin et al., “Tumor Necrosis Factor–Like Weak Inducer of Apoptosis or Fn14 Deficiency Reduce Elastase Perfusion–Induced Aortic Abdominal Aneurysm in Mice,” which published online August 4, 2014, and appears in the August 2014 issue of the journal ( J Am Heart Assoc . 2014
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- 2014
41. Galectin‐3, a Biomarker Linking Oxidative Stress and Inflammation With the Clinical Outcomes of Patients With Atherothrombosis
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Jesús Egido, Julio Madrigal-Matute, Elena Burillo, José Luis Martín-Ventura, Luis Miguel Blanco-Colio, Oscar Beloqui, Carlos Ernesto Fernandez-Garcia, Patricia Llamas-Granda, Alberto Benito-Martin, Guillermo Zalba, Jes Sandal Lindholt, and Alberto Ortiz
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Carotid Artery Diseases ,Male ,Galectin 3 ,Atherothrombosis ,Inflammation ,In Vitro Techniques ,medicine.disease_cause ,Carotid Intima-Media Thickness ,Vascular Medicine ,Peripheral blood mononuclear cell ,Monocytes ,Cell Line ,Macrophage chemotaxis ,Peripheral Arterial Disease ,atherothrombosis ,medicine ,Humans ,oxidative stress ,Mortality ,Aged ,Original Research ,NADPH oxidase ,biology ,business.industry ,Macrophages ,NADPH Oxidases ,biomarkers ,Middle Aged ,Prognosis ,mortality ,Microvesicles ,Oxidative stress ,Galectin-3 ,Case-Control Studies ,Immunology ,biology.protein ,Tetradecanoylphorbol Acetate ,Biomarker (medicine) ,Female ,medicine.symptom ,Cardiology and Cardiovascular Medicine ,business ,Biomarkers ,Follow-Up Studies - Abstract
Background Galectin‐3 (Gal‐3) participates in different mechanisms involved in atherothrombosis, such as inflammation, proliferation, or macrophage chemotaxis. Thus, there have been committed intensive efforts to elucidate the function of Gal‐3 in cardiovascular ( CV ) diseases. The role of Gal‐3 as a circulating biomarker has been demonstrated in patients with heart failure, but its importance as a biomarker in atherothrombosis is still unknown. Methods and Results Because Gal‐3 is involved in monocyte‐to‐macrophage transition, we used fresh isolated monocytes and the in vitro model of macrophage differentiation of THP ‐1 cells stimulated with phorbol myristate acetate ( PMA) . Gal‐3 release is increased by PMA in human monocytes and macrophages, a process involving exosomes and regulated by reactive oxygen species/ NADPH oxidase activity. In asymptomatic subjects (n=199), Gal‐3 plasma levels are correlated with NADPH oxidase activity in peripheral blood mononuclear cells ( r =0.476; P r =0.438; P mL ; P P Conclusions Gal‐3 extracellular levels could reflect key underlying mechanisms involved in atherosclerosis etiology, development, and plaque rupture, such as inflammation, infiltration of circulating cells and oxidative stress. Moreover, circulating Gal‐3 concentrations are associated with clinical outcomes in patients with atherothrombosis.
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- 2014
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42. Thioredoxin-1/peroxiredoxin-1 as sensors of oxidative stress mediated by NADPH oxidase activity in atherosclerosis
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Jesús Egido, Elena Burillo, Carlos Ernesto Fernandez-Garcia, José Luis Martín-Ventura, Luis Miguel Blanco-Colio, Roxana Martinez-Pinna, Patricia Llamas-Granda, Ana Fortuño, Guillermo Zalba, Oscar Beloqui, and Julio Madrigal-Matute
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Carotid Artery Diseases ,Male ,animal structures ,Biology ,Peroxiredoxin 1 ,medicine.disease_cause ,Biochemistry ,Carotid Intima-Media Thickness ,Cell Line ,chemistry.chemical_compound ,Thioredoxins ,Physiology (medical) ,medicine ,Humans ,Aged ,NADPH oxidase ,Superoxide ,Macrophages ,NADPH Oxidases ,Peroxiredoxins ,Middle Aged ,Molecular biology ,Oxidative Stress ,Protein Transport ,chemistry ,Case-Control Studies ,Apocynin ,Asymptomatic Diseases ,biology.protein ,Female ,P22phox ,Thioredoxin ,Peroxiredoxin ,Oxidative stress ,Biomarkers - Abstract
To assess the potential association between TRX-1/PRX-1 and NADPH oxidase (Nox) activity in vivo and in vitro, TRX-1/PRX-1 levels were assessed by ELISA in 84 asymptomatic subjects with known phagocytic NADPH oxidase activity and carotid intima-media thickness (IMT). We found a positive correlation between TRX-1/PRX-1 and NADPH oxidase-dependent superoxide production (r=0.48 and 0.47; p
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- 2014
43. Label-free proteomic analysis of red blood cell membrane fractions from abdominal aortic aneurysm patients
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Jesús Egido, José Luis Martín-Ventura, Julio Madrigal-Matute, Monica Maria Torres-Fonseca, Juan Antonio López, Elena Burillo, Emilio Camafeita, Jean-Baptiste Michel, Luis Miguel Blanco-Colio, Roxana Martinez-Pinna, Patricia Llamas-Granda, Ministerio de Ciencia e Innovación (España), Ministerio de Sanidad y Consumo (España), and Instituto de Salud Carlos III
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Proteomics ,Pathology ,medicine.medical_specialty ,Clinical Biochemistry ,medicine.disease_cause ,Red blood cells ,Andrology ,Western blot ,medicine ,Ankyrin ,Humans ,chemistry.chemical_classification ,biology ,medicine.diagnostic_test ,Erythrocyte Membrane ,medicine.disease ,Abdominal aortic aneurysm ,Red blood cell ,medicine.anatomical_structure ,Membrane ,Membrane protein ,chemistry ,Catalase ,Case-Control Studies ,biology.protein ,cardiovascular system ,Transcriptome ,Oxidative stress ,Aortic Aneurysm, Abdominal - Abstract
Purpose To test whether red blood cell (RBC) membrane composition is modified in abdominal aortic aneurysms (AAA) patients. Experimental design RBC membrane extracts from AAA patients (aortic diameter >3 cm, n = 7) and control subjects (n = 4) were analyzed by a label-free quantitative MS-based strategy, using spectral count data. Additional validation was performed by western-blot. Results Data analysis based on spectral count from MS/MS-based experiments provided us a signature of 39 proteins differentially expressed in RBC membranes between AAA and controls (changes equal/over 1.515-fold; p-values equal/lower 0.05). MS data revealed altered levels of structural membrane proteins (e.g. spectrins and ankyrin), components of the degradation machinery (proteasome subunits), and oxidative stress related proteins (e.g. catalase and peroxiredoxin-2) among others. Decreased catalase and peroxiredoxin-2 expression in RBC membrane of AAA patients compared to controls were further validated by Western blot, confirming the proteomic results. Conclusions and clinical relevance RBCs membrane protein composition is altered in AAA patients, which could be involved in the pathological role of RBCs in aortic tissue and become potential targets to prevent AAA progression.
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- 2014
44. Tumor necrosis factor-like weak inducer of apoptosis or Fn14 deficiency reduce elastase perfusion-induced aortic abdominal aneurysm in mice
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Luis Miguel Blanco-Colio, Carlos Zaragoza, Carlos Tarin, Valvanera Fernández-Laso, Mónica Gómez, Julio Madrigal-Matute, José Luis Martín-Ventura, Jesús Egido, Cristina Sastre, Linda C. Burkly, Instituto de Salud Carlos III, Fundación Conchita Rábago de Jiménez Díaz, and Sociedad Española de Arteriosclerosis
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CD31 ,medicine.medical_specialty ,Vascular smooth muscle ,Angiogenesis ,Neutrophils ,medicine.medical_treatment ,T-Lymphocytes ,Myocytes, Smooth Muscle ,Inflammation ,Apoptosis ,Vascular Medicine ,Muscle, Smooth, Vascular ,Receptors, Tumor Necrosis Factor ,Proinflammatory cytokine ,Neovascularization ,MMP activity ,Mice ,Internal medicine ,TWEAK ,medicine ,Animals ,Chemokine CCL5 ,Chemokine CCL2 ,Original Research ,Mice, Knockout ,Pancreatic Elastase ,business.industry ,Macrophages ,Fn14 ,Cytokine TWEAK ,Aneurysm ,Disease Models, Animal ,Endocrinology ,Cytokine ,Matrix Metalloproteinase 9 ,TWEAK Receptor ,Immunology ,Tumor Necrosis Factors ,aneurysm ,cardiovascular system ,Tumor necrosis factor alpha ,medicine.symptom ,Cardiology and Cardiovascular Medicine ,business ,Aortic Aneurysm, Abdominal - Abstract
Background Abdominal aortic aneurysm ( AAA ) involves leukocyte recruitment, inflammatory cytokine production, vascular cell apoptosis, neovascularization, and vascular remodeling, all of which contribute to aortic dilatation. Tumor necrosis factor‐like weak inducer of apoptosis ( TWEAK ) is a cytokine implicated in proinflammatory responses, angiogenesis, and matrix degradation but its role in AAA formation is currently unknown. Methods and Results Experimental AAA with aortic elastase perfusion in mice was induced in wild‐type ( WT ), TWEAK deficient ( TWEAK KO ), or Fn14‐deficient (Fn14 KO ) mice. TWEAK or Fn14 KO deficiency reduced aortic expansion, lesion macrophages, CD 3 + T cells, neutrophils, CD 31 + microvessels, CCL 2 and CCL 5 chemokines expression, and MMP activity after 14 days postperfusion. TWEAK and Fn14 KO mice also showed a reduced loss of medial vascular smooth muscle cells ( VSMC ) that was related to a reduced number of apoptotic cells in these animals compared with WT mice. Aortas from WT animals present a higher disruption of the elastic layer and MMP activity than those from TWEAK or Fn14 KO mice, indicating a diminished vascular remodeling in KO animals. In vitro experiments unveiled that TWEAK induces CCL 5 secretion and MMP ‐9 activation in both VSMC and bone marrow‐derived macrophages, and decrease VSMC viability, effects dependent on Fn14. Conclusions TWEAK /Fn14 axis participates in AAA formation by promoting lesion inflammatory cell accumulation, angiogenesis, matrix‐degrading protease expression, and vascular remodeling. Blocking TWEAK /Fn14 interaction could be a new target for the treatment of AAA .
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- 2014
45. Therapeutic inhibition of HSP90 in a mouse model of diabetic atherosclerosis and nephropathy
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Beñat Mallavia, J.L. Martin-Ventura, Carmen Gomez-Guerrero, Ainhoa Oguiza, Julio Madrigal-Matute, Carlota Recio, Jesús Egido, and Iolanda Lázaro
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biology ,business.industry ,biology.protein ,medicine ,Pharmacology ,Cardiology and Cardiovascular Medicine ,medicine.disease ,business ,Hsp90 ,Nephropathy - Published
- 2015
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46. From tissue iron retention to low systemic haemoglobin levels, new pathophysiological biomarkers of human abdominal aortic aneurysm
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Thibaud Lefebvre, Jesús Egido, Jes S. Lindholt, Luis Miguel Blanco-Colio, Monica Maria Torres-Fonseca, Olivier Meilhac, M. Esteban-Salan, Michel Jb, M. Vega de Céniga, Julio Madrigal-Matute, Sandrine Delbosc, Günter Weiss, Laurent Gouya, J.L. Martin-Ventura, Fathi Driss, Roxana Martinez-Pinna, and J. Laustsen
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0301 basic medicine ,Male ,medicine.medical_specialty ,Pathology ,Erythrocytes ,Iron ,Transferrin receptor ,macromolecular substances ,030204 cardiovascular system & hematology ,Gastroenterology ,03 medical and health sciences ,Hemoglobins ,0302 clinical medicine ,Hepcidins ,Hepcidin ,Risk Factors ,Internal medicine ,medicine.artery ,Receptors, Transferrin ,medicine ,Humans ,cardiovascular diseases ,Aorta ,Aged ,chemistry.chemical_classification ,biology ,Transferrin ,Anemia ,Hematology ,Odds ratio ,medicine.disease ,Prognosis ,Survival Analysis ,Abdominal aortic aneurysm ,Ferritin ,Red blood cell ,030104 developmental biology ,medicine.anatomical_structure ,chemistry ,Ferritins ,biology.protein ,cardiovascular system ,Female ,Biomarkers ,Aortic Aneurysm, Abdominal - Abstract
SummaryIron deposits are observed in tissue of abdominal aortic aneurysm (AAA) patients, although the underlying mechanisms are not completely elucidated. Therefore we explored circulating markers of iron metabolism in AAA patients, and tested if they could serve as biomarkers of AAA. Increased red blood cell (RBC)-borne iron retention and transferrin, transferrin receptor and ferritin expression was observed in AAA tissue compared to control aorta (immunohistochemistry and western blot). In contrast, decreased circulating iron, transferrin, mean corpuscular haemoglobin concentration (MCHC) and haemoglobin concentration, along with circulating RBC count, were observed in AAA patients (aortic diameter >3 cm, n=114) compared to controls (aortic diameter 5 cm, n=8,912) compared to those in patients with atherosclerotic aorto-iliac occlusive disease (n=17,737) [adjusted odds ratio=1.77 (95% confidence interval: 1.61;1.93)]. Finally, the mortality risk among AAA patients with anaemia was increased by almost 30% [adjusted hazard ratio: 1.29 (95% confidence interval: 1.16;1.44)] as compared to AAA subjects without anaemia. In conclusion, local iron retention and altered iron recycling associated to high hepcidin and low transferrin systemic concentrations could lead to reduced circulating haemoglobin levels in AAA patients. Low haemoglobin levels are independently associated to AAA presence and clinical outcome.
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- 2013
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47. Genetic deletion or TWEAK blocking antibody administration reduce atherosclerosis and enhance plaque stability in mice
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Begoña Muñoz-García, Juan Antonio Moreno, Carlos Pastor-Vargas, Julio Madrigal-Matute, Valvanera Fernández-Laso, Patricia Llamas-Granda, Cristina Sastre, Luis Miguel Blanco-Colio, Jesús Egido, José Luis Martín-Ventura, and Linda C. Burkly
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Apolipoprotein E ,medicine.medical_specialty ,Pathology ,Necrosis ,Vascular smooth muscle ,Myocytes, Smooth Muscle ,Inflammation ,Apoptosis ,Proinflammatory cytokine ,Mice ,Apolipoproteins E ,Internal medicine ,TWEAK ,medicine ,Macrophage ,Animals ,Humans ,Aorta ,Mice, Knockout ,Chemistry ,Antibodies, Monoclonal ,Cytokine TWEAK ,Cell Biology ,Original Articles ,stability ,Atherosclerosis ,Plaque, Atherosclerotic ,Endocrinology ,inflammation ,Tumor Necrosis Factors ,Molecular Medicine ,Tumor Necrosis Factor Inhibitors ,medicine.symptom ,TNFSF12 - Abstract
Clinical complications associated with atherosclerotic plaques arise from luminal obstruction due to plaque growth or destabilization leading to rupture. Tumour necrosis factor ligand superfamily member 12 (TNFSF12) also known as TNF-related weak inducer of apoptosis (TWEAK) is a proinflammatory cytokine that participates in atherosclerotic plaque development, but its role in plaque stability remains unclear. Using two different approaches, genetic deletion of TNFSF12 and treatment with a TWEAK blocking mAb in atherosclerosis-prone mice, we have analysed the effect of TWEAK inhibition on atherosclerotic plaques progression and stability. Mice lacking both TNFSF12 and Apolipoprotein E (TNFSF12(-/-) ApoE(-/-) ) exhibited a diminished atherosclerotic burden and lesion size in their aorta. Advanced atherosclerotic plaques of TNFSF12(-/-) ApoE(-/-) or anti-TWEAK treated mice exhibited an increase collagen/lipid and vascular smooth muscle cell/macrophage ratios compared with TNFSF12(+/+) ApoE(-/-) control mice, reflecting a more stable plaque phenotype. These changes are related with two different mechanisms, reduction of the inflammatory response (chemokines expression and secretion and nuclear factor kappa B activation) and decrease of metalloproteinase activity in atherosclerotic plaques of TNFSF12(-/-) ApoE(-/-) . A similar phenotype was observed with anti-TWEAK mAb treatment in TNFSF12(+/+) ApoE(-/-) mice. Brachiocephalic arteries were also examined since they exhibit additional features akin to human atherosclerotic plaques associated with instability and rupture. Features of greater plaque stability including augmented collagen/lipid ratio, reduced macrophage content, and less presence of lateral xanthomas, buried caps, medial erosion, intraplaque haemorrhage and calcium content were present in TNFSF12(-/-) ApoE(-/-) or anti-TWEAK treatment in TNFSF12(+/+) ApoE(-/-) mice. Overall, our data indicate that anti-TWEAK treatment has the capacity to diminish proinflamatory response associated with atherosclerotic plaque progression and to alter plaque morphology towards a stable phenotype.
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- 2013
48. MicroRNAs and atherosclerosis
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Julio Madrigal-Matute, Noemi Rotllan, Juan F. Aranda, and Carlos Fernández-Hernando
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Regulation of gene expression ,miR-33 ,medicine.medical_specialty ,Vascular smooth muscle ,Cell ,Myocytes, Smooth Muscle ,RNA ,Endothelial Cells ,Biology ,Atherosclerosis ,Lipid Metabolism ,Muscle, Smooth, Vascular ,Article ,MicroRNAs ,medicine.anatomical_structure ,Endocrinology ,Gene Expression Regulation ,Internal medicine ,microRNA ,Gene expression ,medicine ,Cancer research ,Macrophage ,Humans ,Cardiology and Cardiovascular Medicine - Abstract
MicroRNAs (miRNAs) are small (~22nucleotide) sequences of RNA that regulate gene expression at posttranscriptional level. MiRNA/mRNA base pairing complementarity provokes mRNA decay and consequent gene silencing. These endogenous gene expression inhibitors were primarily described in cancer but recent exciting findings have also demonstrated a key role in cardiovascular diseases (CVDs) including atherosclerosis. MiRNAs controls endothelial cell (EC), vascular smooth muscle cell (VSMC) and macrophage functions, and thereby regulate the progression of atherosclerosis. MiRNAs expression is modulated by different stimuli involved in every stage of atherosclerosis and conversely miRNAs modulates several pathways implicated in plaque development such as cholesterol metabolism. In the present review, we focus on the importance of miRNAs in atherosclerosis and we further discuss their potential use as biomarkers and therapeutic targets in CVDs.
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- 2013
49. HMGB1 expression and secretion are increased via TWEAK-Fn14 interaction in atherosclerotic plaques and cultured monocytes
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Luis Miguel Blanco-Colio, Julio Madrigal-Matute, Begoña Muñoz-García, Luis Ortega, Juan Antonio Moreno, José Luis Martín-Ventura, Jesús Egido, Linda C. Burkly, and Cristina Sastre
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Carotid Artery Diseases ,Male ,medicine.medical_treatment ,Monocytes ,Receptors, Tumor Necrosis Factor ,Mice ,Acute monocytic leukemia ,HMGB1 Protein ,Cytokine TWEAK ,Chemokine CCL2 ,Phosphoinositide-3 Kinase Inhibitors ,Mice, Knockout ,NF-kappa B ,Plaque, Atherosclerotic ,Recombinant Proteins ,Up-Regulation ,Cytokine ,medicine.anatomical_structure ,Carotid Arteries ,TWEAK Receptor ,Tumor Necrosis Factors ,Tumor necrosis factor alpha ,Female ,RNA Interference ,medicine.symptom ,Cardiology and Cardiovascular Medicine ,Aortic Diseases ,chemical and pharmacologic phenomena ,Inflammation ,Biology ,HMGB1 ,Transfection ,Apolipoproteins E ,Cell Line, Tumor ,medicine ,Animals ,Humans ,RNA, Messenger ,Protein Kinase Inhibitors ,Aged ,Monocyte ,medicine.disease ,Atherosclerosis ,Molecular biology ,Antibodies, Neutralizing ,Disease Models, Animal ,Apoptosis ,Immunology ,biology.protein ,Tumor Necrosis Factor Inhibitors ,Phosphatidylinositol 3-Kinase - Abstract
Objective— High-mobility group box 1 (HMGB1), a DNA-binding cytokine expressed mainly by macrophages, contributes to lesion progression and chronic inflammation within atherosclerotic plaque. It has been suggested that different cytokines could regulate HMGB1 expression in monocytes. We have analyzed the effect of tumor necrosis factor–like weak inducer of apoptosis (TWEAK) on HMGB1 expression both in vivo and in vitro. Methods and Results— Expression of TWEAK and its receptor fibroblast growth factor–inducible 14 (Fn14) was positively correlated with HMGB1 in human carotid atherosclerotic plaques. TWEAK increased HMGB1 mRNA expression and protein secretion in human acute monocytic leukemia cell line cultured monocytes. TWEAK-mediated HMGB1 increase was only observed in M1 macrophages but not in M2 ones. These effects were reversed using blocking anti-Fn14 antibody or nuclear factor-kappa B and phosphotidylinositol-3 kinase inhibitors. TWEAK also increased monocyte chemoattractant protein-1 secretion in human acute monocytic leukemia cell line cells, an effect blocked with an HMGB1 small interfering RNA. Systemic TWEAK injection in ApoE −/− mice increased HMGB1 protein expression in the aortic root and mRNA expression in total aorta of ApoE −/− mice. Conversely, TWEAK-blocking antibodies diminished HMGB1 protein and mRNA expression compared with IgG-treated mice. Conclusion— Our results indicate that TWEAK can regulate expression and secretion of HMGB1 in monocytes/macrophages, participating in the inflammatory response associated with atherosclerotic plaque development.
- Published
- 2013
50. Erythrocytes, leukocytes and platelets as a source of oxidative stress in chronic vascular diseases: detoxifying mechanisms and potential therapeutic options
- Author
-
Juan Antonio Moreno, Carlos Tarin, Olivier Meilhac, Priscila Ramos-Mozo, Carlos Ernesto Fernandez-Garcia, Jesús Egido, Julio Madrigal-Matute, José Luis Martín-Ventura, Jean-Baptiste Michel, Elena Burillo, Roxana Martinez-Pinna, and Luis Miguel Blanco-Colio
- Subjects
0301 basic medicine ,Blood Platelets ,Erythrocytes ,Iron ,Antigens, Differentiation, Myelomonocytic ,Transferrin receptor ,Receptors, Cell Surface ,Heme ,030204 cardiovascular system & hematology ,medicine.disease_cause ,Antioxidants ,Vascular remodelling in the embryo ,Superoxide dismutase ,03 medical and health sciences ,chemistry.chemical_compound ,0302 clinical medicine ,Thioredoxins ,Antigens, CD ,medicine ,Leukocytes ,Animals ,Humans ,Platelet activation ,Peroxidase ,Respiratory Burst ,chemistry.chemical_classification ,Reactive oxygen species ,NADPH oxidase ,biology ,Haptoglobins ,Superoxide ,Superoxide Dismutase ,Hematology ,Peroxiredoxins ,Atherosclerosis ,Catalase ,Platelet Activation ,Chelation Therapy ,3. Good health ,Oxidative Stress ,030104 developmental biology ,chemistry ,Biochemistry ,biology.protein ,Endothelium, Vascular ,Reactive Oxygen Species ,Oxidative stress ,Heme Oxygenase-1 ,Aortic Aneurysm, Abdominal - Abstract
SummaryOxidative stress is involved in the chronic pathological vascular remodelling of both abdominal aortic aneurysm and occlusive atherosclerosis. Red blood cells (RBCs), leukocytes and platelets present in both, aneurysmal intraluminal thrombus and intraplaque haemorraghes, could be involved in the redox imbalance inside diseased arterial tissues. RBCs haemolysis may release the pro-oxidant haemoglobin (Hb), which transfers heme to tissue and low-density lipoproteins. Heme-iron potentiates molecular, cell and tissue toxicity mediated by leukocytes and other sources of reactive oxygen species (ROS). Polymorphonuclear neutrophils release myeloperoxidase and, along with activated platelets, produce superoxide mediated by NADPH oxidase, causing oxidative damage. In response to this pro-oxidant milieu, several anti-oxidant molecules of plasma or cell origin can prevent ROS production. Free Hb binds to haptoglobin (Hp) and once Hp-Hb complex is endocytosed by CD163, liberated heme is converted into less toxic compounds by heme oxygenase-1. Iron homeostasis is mainly regulated by transferrin, which transports ferric ions to other cells. Transferrin-bound iron is internalised via endocytosis mediated by transferrin receptor. Once inside the cell, iron is mainly stored by ferritin. Other non hemo-iron related antioxidant enzymes (e.g. superoxide dismutase, catalase, thioredoxin and peroxiredoxin) are also involved in redox modulation in vascular remodelling. Oxidative stress is a main determinant of chronic pathological remodelling of the arterial wall, partially linked to the presence of RBCs, leukocytes, platelets and oxidised fibrin within tissue and to the imbalance between pro-/anti-oxidant molecules. Understanding the complex mechanisms underlying redox imbalance could help to define novel potential targets to decrease atherothrombotic risk.
- Published
- 2012
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