| Literature DB >> 32640216 |
Ahmad Kobiita1, Svenja Godbersen1, Elisa Araldi1, Umesh Ghoshdastider1, Marc W Schmid2, Giatgen Spinas3, Holger Moch4, Markus Stoffel5.
Abstract
The ability of pancreatic β-cells to respond to increased demands for insulin during metabolic stress critically depends on proper ribosome homeostasis and function. Excessive and long-lasting stimulation of insulin secretion can elicit endoplasmic reticulum (ER) stress, unfolded protein response, and β-cell apoptosis. Here we show that the diabetes susceptibility gene JAZF1 is a key transcriptional regulator of ribosome biogenesis, global protein, and insulin translation. JAZF1 is excluded from the nucleus, and its expression levels are reduced upon metabolic stress and in diabetes. Genetic deletion of Jazf1 results in global impairment of protein synthesis that is mediated by defects in ribosomal protein synthesis, ribosomal RNA processing, and aminoacyl-synthetase expression, thereby inducing ER stress and increasing β-cell susceptibility to apoptosis. Importantly, JAZF1 function and its pleiotropic actions are impaired in islets of murine T2D and in human islets exposed to metabolic stress. Our study identifies JAZF1 as a central mediator of metabolic stress in β-cells.Entities:
Keywords: ER stress; Jazf1; aminoacyl-tRNA synthetase; apoptosis; diabetes; insulin; rRNA processing; ribosomal proteins; ribosome biogenesis; transcription
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Year: 2020 PMID: 32640216 DOI: 10.1016/j.celrep.2020.107846
Source DB: PubMed Journal: Cell Rep Impact factor: 9.423