Pancreatic β-Cell–Specific Deletion of VPS41 Causes Diabetes Due to Defects in Insulin Secretion

Author:

Burns Christian H.1,Yau Belinda2,Rodriguez Anjelica1,Triplett Jenna1,Maslar Drew1,An You Sun2,van der Welle Reini E.N.3,Kossina Ross G.4,Fisher Max R.4,Strout Gregory W.4,Bayguinov Peter O.4,Veenendaal Tineke3,Chitayat David56,Fitzpatrick James A.J.478,Klumperman Judith3,Kebede Melkam A.2,Asensio Cedric S.1ORCID

Affiliation:

1. Department of Biological Sciences, University of Denver, Denver, CO

2. Discipline of Physiology, School of Medical Sciences, Charles Perkins Centre, The University of Sydney, Camperdown, New South Wales, Australia

3. Section of Cell Biology, Center for Molecular Medicine, University Medical Center Utrecht, Utrecht University, Utrecht, the Netherlands

4. Washington University Center for Cellular Imaging, Washington University School of Medicine, St. Louis, MO

5. Division of Clinical and Metabolic Genetics, Department of Pediatrics, The Hospital for Sick Children, University of Toronto, Toronto, Ontario, Canada

6. Prenatal Diagnosis and Medical Genetics Program, Department of Obstetrics and Gynaecology, University of Toronto, Toronto, Ontario, Canada

7. Departments of Neuroscience and Cell Biology and Physiology, Washington University School of Medicine, St. Louis, MO

8. Department of Biomedical Engineering, Washington University in St. Louis, St. Louis, MO

Abstract

Insulin secretory granules (SGs) mediate the regulated secretion of insulin, which is essential for glucose homeostasis. The basic machinery responsible for this regulated exocytosis consists of specific proteins present both at the plasma membrane and on insulin SGs. The protein composition of insulin SGs thus dictates their release properties, yet the mechanisms controlling insulin SG formation, which determine this molecular composition, remain poorly understood. VPS41, a component of the endolysosomal tethering homotypic fusion and vacuole protein sorting (HOPS) complex, was recently identified as a cytosolic factor involved in the formation of neuroendocrine and neuronal granules. We now find that VPS41 is required for insulin SG biogenesis and regulated insulin secretion. Loss of VPS41 in pancreatic β-cells leads to a reduction in insulin SG number, changes in their transmembrane protein composition, and defects in granule-regulated exocytosis. Exploring a human point mutation, identified in patients with neurological but no endocrine defects, we show that the effect on SG formation is independent of HOPS complex formation. Finally, we report that mice with a deletion of VPS41 specifically in β-cells develop diabetes due to severe depletion of insulin SG content and a defect in insulin secretion. In sum, our data demonstrate that VPS41 contributes to glucose homeostasis and metabolism.

Funder

Children’s Discovery Institute

Foundation for Barnes-Jewish Hospital

Washington University Diabetes Research Center

Deutsche Forschungsgemeinschaft

American Diabetes Association

National Institute of General Medical Sciences

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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