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Liver protein profiles in insulin receptor-knockout mice reveal novel molecules involved in the diabetes pathophysiology
- Source :
- American journal of physiology: endocrinology and metabolism 308 (2015): E744–E755. doi:10.1152/ajpendo.00447.2014, info:cnr-pdr/source/autori:Capuani, Barbara; Della-Morte, David; Donadel, Giulia; Caratelli, Sara; Bova, Luca; Pastore, Donatella; De Canio, Michele; D'Aguanno, Simona; Coppola, Andrea; Pacifici, Francesca; Arriga, Roberto; Bellia, Alfonso; Ferrelli, Francesca; Tesauro, Manfredi; Federici, Massimo; Neri, Anna; Bernardini, Sergio; Sbraccia, Paolo; Di Daniele, Nicola; Sconocchia, Giuseppe; Orlandi, Augusto; Urbani, Andrea; Lauro, Davide/titolo:Liver protein profiles in insulin receptor-knockout mice reveal novel molecules involved in the diabetes pathophysiology/doi:10.1152%2Fajpendo.00447.2014/rivista:American journal of physiology: endocrinology and metabolism/anno:2015/pagina_da:E744/pagina_a:E755/intervallo_pagine:E744–E755/volume:308
- Publication Year :
- 2015
- Publisher :
- American Physiological Society, Bethesda, MD , Stati Uniti d'America, 2015.
-
Abstract
- Liver has a principal role in glucose regulation and lipids homeostasis. It is under a complex control by substrates such as hormones, nutrients, and neuronal impulses. Insulin promotes glycogen synthesis, lipogenesis, and lipoprotein synthesis and inhibits gluconeogenesis, glycogenolysis, and VLDL secretion by modifying the expression and enzymatic activity of specific molecules. To understand the pathophysiological mechanisms leading to metabolic liver disease, we analyzed liver protein patterns expressed in a mouse model of diabetes by proteomic approaches. We used insulin receptor-knockout (IR−/−) and heterozygous (IR+/−) mice as a murine model of liver metabolic dysfunction associated with diabetic ketoacidosis and insulin resistance. We evaluated liver fatty acid levels by microscopic examination and protein expression profiles by orthogonal experimental strategies using protein 2-DE MALDI-TOF/TOF and peptic nLC-MS/MS shotgun profiling. Identified proteins were then loaded into Ingenuity Pathways Analysis to find possible molecular networks. Twenty-eight proteins identified by 2-DE analysis and 24 identified by nLC-MS/MS shotgun were differentially expressed among the three genotypes. Bioinformatic analysis revealed a central role of high-mobility group box 1/2 and huntigtin never reported before in association with metabolic and related liver disease. A different modulation of these proteins in both blood and hepatic tissue further suggests their role in these processes. These results provide new insight into pathophysiology of insulin resistance and hepatic steatosis and could be useful in identifying novel biomarkers to predict risk for diabetes and its complications.
- Subjects :
- medicine.medical_specialty
Settore MED/09 - Medicina Interna
Proteome
Physiology
Knockout
Endocrinology, Diabetes and Metabolism
medicine.medical_treatment
Inbred C57BL
Settore MED/13 - Endocrinologia
Mice
Liver disease
Insulin resistance
proteomics
Non-alcoholic Fatty Liver Disease
Physiology (medical)
Internal medicine
Diabetes mellitus
insulin resistance
Diabetes Mellitus
medicine
Insulin
Animals
Settore MED/49 - Scienze Tecniche Dietetiche Applicate
Glycogen synthase
huntigtin
Settore MED/04 - Patologia Generale
Inflammation
Mice, Knockout
biology
Animal
Settore BIO/12
high-mobility group-B1
Disease Models, Animal
Liver
Metabolome
Mice, Inbred C57BL
Proteins
Proteomics
Receptor, Insulin
medicine.disease
Insulin receptor
Endocrinology
Biochemistry
Disease Models
Lipogenesis
biology.protein
Blood sugar regulation
Receptor
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- American journal of physiology: endocrinology and metabolism 308 (2015): E744–E755. doi:10.1152/ajpendo.00447.2014, info:cnr-pdr/source/autori:Capuani, Barbara; Della-Morte, David; Donadel, Giulia; Caratelli, Sara; Bova, Luca; Pastore, Donatella; De Canio, Michele; D'Aguanno, Simona; Coppola, Andrea; Pacifici, Francesca; Arriga, Roberto; Bellia, Alfonso; Ferrelli, Francesca; Tesauro, Manfredi; Federici, Massimo; Neri, Anna; Bernardini, Sergio; Sbraccia, Paolo; Di Daniele, Nicola; Sconocchia, Giuseppe; Orlandi, Augusto; Urbani, Andrea; Lauro, Davide/titolo:Liver protein profiles in insulin receptor-knockout mice reveal novel molecules involved in the diabetes pathophysiology/doi:10.1152%2Fajpendo.00447.2014/rivista:American journal of physiology: endocrinology and metabolism/anno:2015/pagina_da:E744/pagina_a:E755/intervallo_pagine:E744–E755/volume:308
- Accession number :
- edsair.doi.dedup.....b579c913d9d0e3215560a54307da943f
- Full Text :
- https://doi.org/10.1152/ajpendo.00447.2014