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Merck
CN
  • Lysosomal degradation of newly formed insulin granules contributes to β cell failure in diabetes.

Lysosomal degradation of newly formed insulin granules contributes to β cell failure in diabetes.

Nature communications (2019-07-28)
Adrien Pasquier, Kevin Vivot, Eric Erbs, Coralie Spiegelhalter, Zhirong Zhang, Victor Aubert, Zengzhen Liu, Meryem Senkara, Elisa Maillard, Michel Pinget, Julie Kerr-Conte, François Pattou, Gilbert Marciniak, Axel Ganzhorn, Paolo Ronchi, Nicole L Schieber, Yannick Schwab, Paul Saftig, Alexander Goginashvili, Romeo Ricci
摘要

Compromised function of insulin-secreting pancreatic β cells is central to the development and progression of Type 2 Diabetes (T2D). However, the mechanisms underlying β cell failure remain incompletely understood. Here, we report that metabolic stress markedly enhances macroautophagy-independent lysosomal degradation of nascent insulin granules. In different model systems of diabetes including of human origin, stress-induced nascent granule degradation (SINGD) contributes to loss of insulin along with mammalian/mechanistic Target of Rapamycin (mTOR)-dependent suppression of macroautophagy. Expression of Protein Kinase D (PKD), a negative regulator of SINGD, is reduced in diabetic β cells. Pharmacological activation of PKD counters SINGD and delays the onset of T2D. Conversely, inhibition of PKD exacerbates SINGD, mitigates insulin secretion and accelerates diabetes. Finally, reduced levels of lysosomal tetraspanin CD63 prevent SINGD, leading to increased insulin secretion. Overall, our findings implicate aberrant SINGD in the pathogenesis of diabetes and suggest new therapeutic strategies to prevent β cell failure.

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Sigma-Aldrich
抗 α-微管蛋白单克隆抗体 小鼠抗, clone DM1A, ascites fluid
Sigma-Aldrich
抗-GAPDH 兔抗, ~1 mg/mL, affinity isolated antibody, buffered aqueous solution
Sigma-Aldrich
单克隆抗 胰岛素 小鼠抗, clone K36AC10, ascites fluid
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Anti-phospho-PRKD1 (pSer910) antibody produced in rabbit, affinity isolated antibody