Exendin-4 Improves β-Cell Function in Autophagy-Deficient β-Cells

Author:

Abe Hiroko1,Uchida Toyoyoshi1,Hara Akemi12,Mizukami Hiroki3,Komiya Koji1,Koike Masato4,Shigihara Nayumi1,Toyofuku Yukiko1,Ogihara Takeshi1,Uchiyama Yasuo4,Yagihashi Soroku3,Fujitani Yoshio152,Watada Hirotaka12678

Affiliation:

1. Department of Metabolism and Endocrinology (H.A., T.U., A.H., K.K., N.S., Y.T., T.O., Y.F., H.W.), Juntendo University Graduate School of Medicine, Tokyo, Japan

2. Department of Center for β-Cell Biology and Regeneration (A.H., Y.F., H.W.), Juntendo University Graduate School of Medicine, Tokyo, Japan

3. Department of Pathology and Molecular Medicine (H.M., S.Y.), Hirosaki University Graduate School of Medicine, Hirosaki, Japan

4. Department of Cell Biology and Neuroscience (M.K., Y.U.), Juntendo University Graduate School of Medicine, Tokyo, Japan

5. Japan Science Technology Agency (JST)-CREST Program (Y.F.)

6. Department of Center for Therapeutic Innovations in Diabetes (H.W.), Juntendo University Graduate School of Medicine, Tokyo, Japan

7. Department of Center for Molecular Diabetology (H.W.), Juntendo University Graduate School of Medicine, Tokyo, Japan

8. Department of Sportology Center (H.W.), Juntendo University Graduate School of Medicine, Tokyo, Japan

Abstract

Autophagy is cellular machinery for maintenance of β-cell function and mass. The implication of autophagy failure in β-cells on the pathophysiology of type 2 diabetes and its relation to the effect of treatment of diabetes remains elusive. Here, we found increased expression of p62 in islets of db/db mice and patients with type 2 diabetes mellitus. Treatment with exendin-4, a glucagon like peptide-1 receptor agonist, improved glucose tolerance in db/db mice without significant changes in p62 expression in β-cells. Also in β-cell-specific Atg7-deficient mice, exendin-4 efficiently improved blood glucose level and glucose tolerance mainly by enhanced insulin secretion. In addition, we found that exendin-4 reduced apoptotic cell death and increased proliferating cells in the Atg7-deficient islets, and that exendin-4 counteracted thapsigargin-induced cell death of isolated islets augmented by autophagy deficiency. Our results suggest the potential involvement of reduced autophagy in β-cell dysfunction in type 2 diabetes. Without altering the autophagic state in β-cells, exendin-4 improves glucose tolerance associated with autophagy deficiency in β-cells. This is mainly achieved through augmentation of insulin secretion. In addition, exendin-4 prevents apoptosis and increases the proliferation of β-cells associated with autophagy deficiency, also without altering the autophagic machinery in β-cells.

Publisher

The Endocrine Society

Subject

Endocrinology

Reference35 articles.

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