脂肪生成
H3K4me3
谷氨酰胺
脂肪细胞
细胞生物学
细胞分化
组蛋白
生物
产热
重编程
化学
脂肪组织
基因表达
生物化学
基因
发起人
氨基酸
作者
Xiaowen Pan,Lingxia Ye,Xiaozhen Guo,Sheng Wang,Ziyin Zhang,Qintao Wang,Jingjing Huang,Jingya Xu,Cai Yongping,Xinyi Shou,Yuting Wang,Yu Feng,Cen Xie,Peng‐Fei Shan,Zhuo-Xian Meng
出处
期刊:Diabetes
[American Diabetes Association]
日期:2023-08-14
卷期号:72 (11): 1574-1596
被引量:3
摘要
Thermogenic adipocytes have been extensively investigated because of their energy-dissipating property and therapeutic potential for obesity and diabetes. Besides serving as fuel sources, accumulating evidence suggests that intermediate metabolites play critical roles in multiple biological processes. However, their role in adipocyte differentiation and thermogenesis remains unexplored. Here, we report that human and mouse obesity is associated with marked downregulation of glutamine synthetase (Glul) expression and activity in thermogenic adipose tissues. Glul is robustly upregulated during brown adipocyte (BAC) differentiation and in brown adipose tissue (BAT) upon cold exposure and Cl316,243 stimulation. Further genetic, pharmacologic, or metabolic manipulations of Glul and glutamine levels reveal that glutamine cells autonomously stimulate BAC differentiation and function and BAT remodeling and improve systemic energy homeostasis in mice. Mechanistically, glutamine promotes transcriptional induction of adipogenic and thermogenic gene programs through histone modification-mediated chromatin remodeling. Among all the glutamine-regulated writer and eraser genes responsible for histone methylation and acetylation, only Prdm9, a histone lysine methyltransferase, is robustly induced during BAC differentiation. Importantly, Prdm9 inactivation by shRNA knockdown or a selective inhibitor attenuates glutamine-triggered adipogenic and thermogenic induction. Furthermore, Prdm9 gene transcription is regulated by glutamine through the recruitment of C/EBPb to its enhancer region. This work reveals glutamine as a novel activator of thermogenic adipocyte differentiation and uncovers an unexpected role of C/EBPb-Prdm9-mediated H3K4me3 and transcriptional reprogramming in adipocyte differentiation and thermogenesis.
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