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Glul产生的谷氨酰胺通过Prdm9介导的H3K4me3和转录重编程促进产热脂肪细胞分化。

Glutamine Production by Glul Promotes Thermogenic Adipocyte Differentiation Through Prdm9-Mediated H3K4me3 and Transcriptional Reprogramming.

作者信息

Pan Xiaowen, Ye Lingxia, Guo Xiaozhen, Wang Weihua, Zhang Ziyin, Wang Qintao, Huang Jingjing, Xu Jingya, Cai Yanhan, Shou Xinxin, Wang Yuting, Feng Yu, Xie Cen, Shan Pengfei, Meng Zhuo-Xian

机构信息

Department of Pathology and Pathophysiology and Department of Cardiology, The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, Zhejiang, China.

Key Laboratory of Disease Proteomics of Zhejiang Province, Zhejiang University School of Medicine, Hangzhou, Zhejiang, China.

出版信息

Diabetes. 2023 Nov 1;72(11):1574-1596. doi: 10.2337/db23-0162.

Abstract

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.

摘要

由于产热脂肪细胞具有能量消耗特性以及对肥胖和糖尿病的治疗潜力,因此已对其进行了广泛研究。除了作为燃料来源外,越来越多的证据表明中间代谢产物在多个生物过程中起关键作用。然而,它们在脂肪细胞分化和产热中的作用仍未被探索。在此,我们报告人和小鼠的肥胖与产热脂肪组织中谷氨酰胺合成酶(Glul)表达和活性的显著下调有关。在棕色脂肪细胞(BAC)分化过程中以及冷暴露和氯卡色林刺激后,棕色脂肪组织(BAT)中的Glul会强烈上调。对Glul和谷氨酰胺水平进行进一步的基因、药理学或代谢操作后发现,谷氨酰胺可自主刺激小鼠的BAC分化和功能以及BAT重塑,并改善全身能量稳态。从机制上讲,谷氨酰胺通过组蛋白修饰介导的染色质重塑促进脂肪生成和产热基因程序的转录诱导。在所有负责组蛋白甲基化和乙酰化的谷氨酰胺调节的写入器和擦除器基因中,只有组蛋白赖氨酸甲基转移酶Prdm9在BAC分化过程中被强烈诱导。重要的是,通过shRNA敲低或选择性抑制剂使Prdm9失活会减弱谷氨酰胺触发的脂肪生成和产热诱导。此外,谷氨酰胺通过将C/EBPb募集到其增强子区域来调节Prdm9基因转录。这项工作揭示了谷氨酰胺是产热脂肪细胞分化的新型激活剂,并揭示了C/EBPb-Prdm9介导的H3K4me3以及转录重编程在脂肪细胞分化和产热中的意外作用。

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