BAF60a-dependent chromatin remodeling preserves β-cell function and contributes to the therapeutic benefits of GLP-1R agonists.

Xinyuan Qiu,Ruo-Ran Wang,Qing-Qian Wu,Hongxing Fu,Shuaishuai Zhu,Wei Chen,Wen Wang,Haide Chen,Xiuyu Ji,Wenjing Zhang,Dandan Yan,Jing Yan,Li Jin,Rong Zhang,Mengjie Shi,Ping Luo,Yingqing Yang,Qintao Wang,Ziyin Zhang,Wei Ding,Xiaowen Pan,Chengbin Li,Bin Liang,Guoji Guo,Hai-Long Piao,Min Zheng,Yan Sheng,Lingyun Zhu,Cheng Hu,Zhuo-Xian Meng
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Abstract

Impaired glucose-stimulated insulin secretion (GSIS) is a hallmark of β-cell dysfunction in diabetes. Epigenetic mechanisms govern cellular glucose sensing and GSIS by β-cells, but they remain incompletely defined. Here, we found that BAF60a functions as a chromatin regulator that sustains biphasic GSIS and preserves β-cell function under metabolic stress conditions. BAF60a was downregulated in β-cells from obese and diabetic mice, monkeys, and humans. β-cell-specific inactivation of BAF60a in adult mice impaired GSIS, leading to hyperglycemia and glucose intolerance. Conversely, restoring BAF60a expression improved β-cell function and systemic glucose homeostasis. Mechanistically, BAF60a physically interacted with Nkx6.1 to selectively modulate chromatin accessibility and transcriptional activity of target genes critical for GSIS coupling in islet β-cells. A BAF60a V278M mutation associated with decreased β-cell GSIS function was identified in human subjects. Mice carrying this mutation, which disrupted the interaction between BAF60a and Nkx6.1, displayed β-cell dysfunction and impaired glucose homeostasis. In addition, GLP-1R and GIPR expression was significantly reduced in BAF60a-deficient islets, attenuating the insulinotropic effect of GLP-1R agonists. Together, these findings support a role for BAF60a as a component of the epigenetic machinery that shapes the chromatin landscape in β-cells critical for glucose sensing and insulin secretion.
baf60a依赖性染色质重塑保留β细胞功能,并有助于GLP-1R激动剂的治疗效果。
葡萄糖刺激胰岛素分泌受损(GSIS)是糖尿病β细胞功能障碍的标志。表观遗传机制支配着细胞葡萄糖感知和β-细胞的GSIS,但它们仍然不完全明确。在这里,我们发现BAF60a作为一种染色质调节剂,在代谢应激条件下维持双相GSIS并保持β细胞功能。BAF60a在肥胖和糖尿病小鼠、猴子和人类的β-细胞中下调。成年小鼠β细胞特异性失活BAF60a会损害GSIS,导致高血糖和葡萄糖耐受不良。相反,恢复BAF60a表达可改善β细胞功能和全身葡萄糖稳态。在机制上,BAF60a与Nkx6.1物理相互作用,选择性地调节胰岛β细胞中GSIS偶联关键靶基因的染色质可及性和转录活性。在人类受试者中发现了与β细胞GSIS功能下降相关的BAF60a V278M突变。携带这种突变的小鼠破坏了BAF60a和Nkx6.1之间的相互作用,表现出β细胞功能障碍和葡萄糖稳态受损。此外,在baf60a缺乏的胰岛中,GLP-1R和GIPR的表达显著降低,减弱了GLP-1R激动剂的胰岛素促胰岛素作用。总之,这些发现支持BAF60a作为表观遗传机制的一个组成部分的作用,该机制在β细胞中形成染色质景观,对葡萄糖感知和胰岛素分泌至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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