4.8 Article

The microRNA-200 family regulates pancreatic beta cell survival in type 2 diabetes

Journal

NATURE MEDICINE
Volume 21, Issue 6, Pages 619-627

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/nm.3862

Keywords

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Funding

  1. Functional Genomics Center Zurich
  2. Light Microscopy and Screening Center Zurich
  3. European Molecular Biology Organization
  4. Austrian Genome Research Programme GEN-AU II and III (Austromouse)
  5. European Genomic Institute for Diabetes [ANR-10-LABX-46]
  6. Juvenile Diabetes Research Foundation (JDRF)
  7. European Research Council
  8. Starr Foundation International
  9. Swiss National Science Foundation
  10. National Center of Competence in Research on RNA Biology and Disease
  11. JDRF [31-2012-783]

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Pancreatic beta cell death is a hallmark of type 1 (T1D) and type 2 (T2D) diabetes, but the molecular mechanisms underlying this aspect of diabetic pathology are poorly understood. Here we report that expression of the microRNA (miR)-200 family is strongly induced in islets of diabetic mice and that beta cell specific overexpression of miR-200 in mice is sufficient to induce beta cell apoptosis and lethal T2D. Conversely, mir-200 ablation in mice reduces beta cell apoptosis and ameliorates T2D. We show that miR-200 negatively regulates a conserved anti-apoptotic and stress-resistance network that includes the essential beta cell chaperone Dnajc3 (also known as p58IPK) and the caspase inhibitor Xiap. We also observed that mir-200 dosage positively controls activation of the tumor suppressor Trp53 and thereby creates a pro-apoptotic gene-expression signature found in islets of diabetic mice. Consequently, miR-200 induced T2D is suppressed by interfering with the signaling of Trp53 and Bax, a proapoptotic member of the B cell lymphoma 2 protein family. Our results reveal a crucial role for the miR-200 family in beta cell survival and the pathophysiology of diabetes.

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