KAT2B Is Required for Pancreatic Beta Cell Adaptation to Metabolic Stress by Controlling the Unfolded Protein Response

KAT2B 通过控制未折叠蛋白反应帮助胰腺 β 细胞适应代谢应激

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作者:Nabil Rabhi, Pierre-Damien Denechaud, Xavier Gromada, Sarah Anissa Hannou, Hongbo Zhang, Talha Rashid, Elisabet Salas, Emmanuelle Durand, Olivier Sand, Amélie Bonnefond, Loic Yengo, Carine Chavey, Caroline Bonner, Julie Kerr-Conte, Amar Abderrahmani, Johan Auwerx, Lluis Fajas, Philippe Froguel, Jean

Abstract

The endoplasmic reticulum (ER) unfolded protein response (UPR(er)) pathway plays an important role in helping pancreatic β cells to adapt their cellular responses to environmental cues and metabolic stress. Although altered UPR(er) gene expression appears in rodent and human type 2 diabetic (T2D) islets, the underlying molecular mechanisms remain unknown. We show here that germline and β cell-specific disruption of the lysine acetyltransferase 2B (Kat2b) gene in mice leads to impaired insulin secretion and glucose intolerance. Genome-wide analysis of Kat2b-regulated genes and functional assays reveal a critical role for Kat2b in maintaining UPR(er) gene expression and subsequent β cell function. Importantly, Kat2b expression is decreased in mouse and human diabetic β cells and correlates with UPR(er) gene expression in normal human islets. In conclusion, Kat2b is a crucial transcriptional regulator for adaptive β cell function during metabolic stress by controlling UPR(er) and represents a promising target for T2D prevention and treatment.

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