蜕膜化
糖酵解
生物
细胞生物学
组蛋白
内分泌学
内科学
子宫内膜
生物化学
医学
新陈代谢
基因
作者
Zhao Wei,Yue Wang,Juan Liu,Qianying Yang,Shuai Zhang,Xiao Hu,Zhicheng Shi,Zhenni Zhang,Jianhui Tian,Dapeng Chu,Lei An
出处
期刊:Endocrinology
[The Endocrine Society]
日期:2023-11-10
卷期号:165 (1)
被引量:3
标识
DOI:10.1210/endocr/bqad169
摘要
Decidualization is a progesterone-dependent cellular differentiation process that is essential for establishing pregnancy. Robust activation of glycolysis and lactate synthesis during decidualization is remarkable, but their developmental functions remain largely unknown. Herein, we identify that endometrial lactate production plays a critical role in establishing local histone lactylation, a newly identified histone modification, and is important for ensuring normal decidualization. Enhanced endometrial glycolysis is the hallmark metabolic change and is tightly coupled with H4K12la during decidualization. Inhibition of histone lactylation impaired decidualization, in either physiological conception or in vivo and in vitro induced decidualization models. Mechanistic study based on CUT&Tag and ATAC-seq revealed that a transcriptional factor hypoxia-inducible factor 1 α (Hif1α) is the critical regulatory target of H4K12la, and in turn forms an H4K12la-Hif1α-glycolysis feedback loop to drive decidualization. Moreover, we demonstrate that the loop is directly activated by progesterone during decidualization. Our study not only advances the current knowledge of the role of lactate in regulating uterine function, but also establishes a novel functional link among the major endocrine factors, endometrial metabolic change, and epigenetic modification during endometrial remodeling. These findings present valuable clues to develop clinical intervention strategies to improve pregnancy outcomes following both natural conception and assisted reproduction.
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