Sorcin Links Pancreatic β-Cell Lipotoxicity to ER Ca2+ Stores

Author:

Marmugi Alice1,Parnis Julia1,Chen Xi2,Carmichael LeAnne1,Hardy Julie1,Mannan Naila1,Marchetti Piero3,Piemonti Lorenzo4,Bosco Domenico5,Johnson Paul6,Shapiro James A.M.7,Cruciani-Guglielmacci Céline8,Magnan Christophe8,Ibberson Mark9,Thorens Bernard10,Valdivia Héctor H.2,Rutter Guy A.1,Leclerc Isabelle1

Affiliation:

1. Section of Cell Biology and Functional Genomics, Division of Diabetes, Endocrinology & Metabolism, Department of Medicine, Imperial College London, London, U.K.

2. Center for Arrhythmia Research, University of Michigan, Ann Arbor, MI

3. Department of Endocrinology and Metabolism, University of Pisa, Pisa, Italy

4. Diabetes Research Institute (HSR-DRI), San Raffaele Scientific Institute, Milan, Italy

5. Cell Isolation and Transplantation Center, Department of Surgery, Geneva University Hospitals and University of Geneva, Geneva, Switzerland

6. Nuffield Department of Surgical Sciences, University of Oxford, Oxford, U.K.

7. Clinical Islet Laboratory and Clinical Islet Transplant Program, University of Alberta, Edmonton, Alberta, Canada

8. Unit of Functional and Adaptive Biology, Paris Diderot University-Paris 7, Paris, France

9. Vital-IT Group, SIB Swiss Institute of Bioinformatics, Lausanne, Switzerland

10. Center for Integrative Genomics, University of Lausanne, Lausanne, Switzerland

Abstract

Preserving β-cell function during the development of obesity and insulin resistance would limit the worldwide epidemic of type 2 diabetes. Endoplasmic reticulum (ER) calcium (Ca2+) depletion induced by saturated free fatty acids and cytokines causes β-cell ER stress and apoptosis, but the molecular mechanisms behind these phenomena are still poorly understood. Here, we demonstrate that palmitate-induced sorcin downregulation and subsequent increases in glucose-6-phosphatase catalytic subunit-2 (G6PC2) levels contribute to lipotoxicity. Sorcin is a calcium sensor protein involved in maintaining ER Ca2+ by inhibiting ryanodine receptor activity and playing a role in terminating Ca2+-induced Ca2+ release. G6PC2, a genome-wide association study gene associated with fasting blood glucose, is a negative regulator of glucose-stimulated insulin secretion (GSIS). High-fat feeding in mice and chronic exposure of human islets to palmitate decreases endogenous sorcin expression while levels of G6PC2 mRNA increase. Sorcin-null mice are glucose intolerant, with markedly impaired GSIS and increased expression of G6pc2. Under high-fat diet, mice overexpressing sorcin in the β-cell display improved glucose tolerance, fasting blood glucose, and GSIS, whereas G6PC2 levels are decreased and cytosolic and ER Ca2+ are increased in transgenic islets. Sorcin may thus provide a target for intervention in type 2 diabetes.

Funder

European Foundation for the Study of Diabetes

National Institutes of Health

Diabetes UK

Wellcome Trust

Medical Research Council

Biotechnology and Biological Sciences Research Council

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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