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1. Selective proteasome degradation of C‐terminally‐truncated human WFS1 in pancreatic beta cells

2. Hachimijiogan, a traditional herbal medicine, modulates adipose cell function and ameliorates diet-induced obesity and insulin resistance in mice

3. A case of multiple glucagonomas with no clinical manifestations of excess glucagon despite hyperglucagonemia

4. A patient with sudden hearing loss induced by propylthiouracil

5. Islet cell dedifferentiation is a pathologic mechanism of long-standing progression of type 2 diabetes

6. Interorgan Crosstalk Contributing to β-Cell Dysfunction

7. Wolfram syndrome in the Japanese population; molecular analysis of WFS1 gene and characterization of clinical features.

8. Glucose and fatty acids synergize to promote B-cell apoptosis through activation of glycogen synthase kinase 3β independent of JNK activation.

9. Genetic deficiency of glycogen synthase kinase-3beta corrects diabetes in mouse models of insulin resistance.

11. Gsk-3-Mediated Proteasomal Degradation of ATF4 Is a Proapoptotic Mechanism in Mouse Pancreatic β-Cells

12. Deficiency of WFS1 leads to the impairment of AVP secretion under dehydration in male mice

13. Islet cell dedifferentiation is a pathologic mechanism of long-standing progression of type 2 diabetes

14. 231-LB: Importance of Intestinal Environment and Cellular Plasticity of Beta Cells in the Development of Post-Pancreatectomy Diabetes

15. 2037-P: Islet ß-Cell Dedifferentiation Is Involved in Progression of Type 2 Diabetes

16. Importance of Intestinal Environment and Cellular Plasticity of Islets in the Development of Postpancreatectomy Diabetes

17. 323-LB: Activation of the GLP-1 Receptor Signaling Prevents Beta-Cell Dedifferentiation in a Mouse Model of Wolfram Syndrome through Modulating TXNIP Expression

18. A patient with sudden hearing loss induced by propylthiouracil

19. Metabolic Insufficiency Caused By Cellular Stresses Is Implicated in Beta-Cell Dedifferentiation in the Mouse Model of Wolfram Syndrome

20. Activation of GLP-1 receptor signalling alleviates cellular stresses and improves beta cell function in a mouse model of Wolfram syndrome

21. A sibling case of Wolfram syndrome with a novel mutation Y652X in WFS1

22. Clock-controlled output gene Dbp is a regulator of Arnt/Hif-1β gene expression in pancreatic islet β-cells

23. Wolfram syndrome 1 gene (WFS1) product localizes to secretory granules and determines granule acidification in pancreatic -cells

24. Conditional ablation of Gsk-3β in islet beta cells results in expanded mass and resistance to fat feeding-induced diabetes in mice

25. Inhibition of Foxo1 Protects Pancreatic Islet β-Cells Against Fatty Acid and Endoplasmic Reticulum Stress–Induced Apoptosis

26. Mice with beta cell overexpression of glycogen synthase kinase-3β have reduced beta cell mass and proliferation

27. [Wolfram syndrome: clinical features, molecular genetics of WFS1 gene]

28. Wolfram syndrome in the Japanese population; molecular analysis of WFS1 gene and characterization of clinical features

30. Leptin Induces Proliferation of Pancreatic β Cell Line MIN6 through Activation of Mitogen-Activated Protein Kinase

34. Glucose and fatty acids synergize to promote B-cell apoptosis through activation of glycogen synthase kinase 3β independent of JNK activation

35. Identification of Glypican3 as a novel GLUT4-binding protein

36. Genetic deficiency of glycogen synthase kinase-3beta corrects diabetes in mouse models of insulin resistance

37. Endoplasmic reticulum stress induces Wfs1 gene expression in pancreatic beta-cells via transcriptional activation

38. Differences in the contribution of HLA-DR and -DQ haplotypes to susceptibility to adult- and childhood-onset type 1 diabetes in Japanese patients

39. Leptin increases the viability of isolated rat pancreatic islets by suppressing apoptosis

40. Troglitazone treatment increases plasma vascular endothelial growth factor in diabetic patients and its mRNA in 3T3-L1 adipocytes

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