赖氨酸
组蛋白H3
组蛋白
乙酰化
基因
细胞生物学
组蛋白H2A
SAP30型
生物
生物化学
氨基酸
作者
Yunjia Zhang,Hong Jiang,Mengdie Dong,Min Jiao,He Xian,Yongkang Tan,Fuhao Liu,Minghong Chen,Xiang Chen,Quanwen Yin,Longbin Zheng,Yongfeng Shao,Xuesong Li,Hongshan Chen
出处
期刊:Cell Reports
[Cell Press]
日期:2024-05-01
卷期号:43 (5): 114180-114180
被引量:13
标识
DOI:10.1016/j.celrep.2024.114180
摘要
Macrophage activation is a hallmark of atherosclerosis, accompanied by a switch in core metabolism from oxidative phosphorylation to glycolysis. The crosstalk between metabolic rewiring and histone modifications in macrophages is worthy of further investigation. Here, we find that lactate efflux-associated monocarboxylate transporter 4 (MCT4)-mediated histone lactylation is closely related to atherosclerosis. Histone H3 lysine 18 lactylation dependent on MCT4 deficiency activated the transcription of anti-inflammatory genes and tricarboxylic acid cycle genes, resulting in the initiation of local repair and homeostasis. Strikingly, histone lactylation is characteristically involved in the stage-specific local repair process during M1 to M2 transformation, whereas histone methylation and acetylation are not. Gene manipulation and protein hydrolysis-targeted chimerism technology are used to confirm that MCT4 deficiency favors ameliorating atherosclerosis. Therefore, our study shows that macrophage MCT4 deficiency, which links metabolic rewiring and histone modifications, plays a key role in training macrophages to become repair and homeostasis phenotypes.
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