2,477 results on '"Nagata, Shigekazu"'
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2. The role of the C-terminal tail region as a plug to regulate XKR8 lipid scramblase
3. Two types of type IV P-type ATPases independently re-establish the asymmetrical distribution of phosphatidylserine in plasma membranes
4. Publisher Correction: Regulation of phospholipid distribution in the lipid bilayer by flippases and scramblases
5. The tertiary structure of the human Xkr8–Basigin complex that scrambles phospholipids at plasma membranes
6. ACK1 and BRK non-receptor tyrosine kinase deficiencies are associated with familial systemic lupus and involved in efferocytosis
7. Predominant localization of phosphatidylserine at the cytoplasmic leaflet of the ER, and its TMEM16K-dependent redistribution
8. Phosphorylation-mediated activation of mouse Xkr8 scramblase for phosphatidylserine exposure
9. Phospholipid flippases enable precursor B cells to flee engulfment by macrophages
10. Single-molecule analysis of phospholipid scrambling by TMEM16F
11. Lupus-like autoimmune disease caused by a lack of Xkr8, a caspase-dependent phospholipid scramblase
12. Apoptosis
13. Impaired Involution of Mammary Glands in the Absence of Milk Fat Globule EGF Factor 8
14. Autoimmune Disease and Impaired Uptake of Apoptotic Cells in MFG-E8-Deficient Mice
15. Mouse macrophages show different requirements for phosphatidylserine receptor Tim4 in efferocytosis
16. Characterization of the scrambling domain of the TMEM16 family
17. Apoptosis
18. A sublethal ATP11A mutation associated with neurological deterioration causes aberrant phosphatidylcholine flipping in plasma membranes
19. Requirement of DNase II for Definitive Erythropoiesis in the Mouse Fetal Liver
20. Testicular FasL is Expressed by Sperm Cells
21. Necrotic Death Pathway in Fas Receptor Signaling
22. Signals Transducers and Activators of Transcription (STAT)-Induced STAT Inhibitor-1 (SSI-1)/Suppressor of Cytokine Signaling-1 (SOCS-1) Suppresses Tumor Necrosis Factor α -Induced Cell Death in Fibroblasts
23. Caspase-Independent Cell Killing by Fas-Associated Protein with Death Domain
24. Transition from Caspase-Dependent to Caspase-Independent Mechanisms at the Onset of Apoptotic Execution
25. Molecular Cloning and Characterization of Human Caspase-Activated DNase
26. Myeloid-Specific Transcriptional Activation by Murine Myeloid Zinc-Finger Protein 2
27. Molecular mechanisms of cell death: recommendations of the Nomenclature Committee on Cell Death 2018
28. Requirement for the CD95 Receptor-Ligand Pathway in c-Myc-Induced Apoptosis
29. ERM (Ezrin/Radixin/Moesin)-Based Molecular Mechanism of Microvillar Breakdown at an Early Stage of Apoptosis
30. Enhanced and Accelerated Lymphoproliferation in Fas-Null Mice
31. Xkr8 phospholipid scrambling complex in apoptotic phosphatidylserine exposure
32. Membrane structure-responsive lipid scrambling by TMEM63B to control plasma membrane lipid distribution
33. Cloning of human Type I interferon cDNAs
34. On the occasion of the 100th volume of the Proceedings of the Japan Academy, Series B (PJA-B)
35. Apoptosis
36. Cardiac myofibroblast engulfment of dead cells facilitates recovery after myocardial infarction
37. Programmed cell death and the immune system
38. TMEM16F is required for phosphatidylserine exposure and microparticle release in activated mouse platelets
39. Apoptosis
40. Apoptosis
41. Caspase-mediated cleavage of phospholipid flippase for apoptotic phosphatidylserine exposure
42. The XK plasma membrane scramblase and the VPS13A cytosolic lipid transporter for ATP‐induced cell death
43. Xk-Related Protein 8 and CED-8 Promote Phosphatidylserine Exposure in Apoptotic Cells
44. Apoptosis
45. Platelet Apoptosis and Apoptotic Platelet Clearance by Macrophages in Secondary Dengue Virus Infections
46. Corrections to Coles, Vasconcelos, Chuck and Segawa
47. Inefficient development of syncytiotrophoblasts in the Atp11a -deficient mouse placenta
48. Constitutive exposure of phosphatidylserine on viable cells
49. Cytokine-dependent but acquired immunity-independent arthritis caused by DNA escaped from degradation
50. Spatiotemporal Activation of Rac1 for Engulfment of Apoptotic Cells
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