Histone Lactylation Boosts Reparative Gene Activation Post–Myocardial Infarction
作者:Naixin Wang, Weiwei Wang, Xiaoqi Wang, Ge Mang, Jianfeng Chen, Xiangyu Yan, Zhonghua Tong, Qiannan Yang, Mengdi Wang, Liangqi Chen, Ping Sun, Yupeng Yang, Jingxuan Cui, Mian Yang, Yafei Zhang, Dongni Wang, Jian Wu, Maomao Zhang, Bo Yu · 发表于:Circulation Research · 年份:2022 · DOI:10.1161/circresaha.122.320488 · 被引用次数:550 · 研究领域:Cardiac Fibrosis and Remodeling、Congenital heart defects research、Cardiovascular Function and Risk Factors
Background: Inflammation resolution and cardiac repair initiation after myocardial infarction (MI) require timely activation of reparative signals. Histone lactylation confers macrophage homeostatic gene expression signatures via transcriptional regulation. However, the role of histone lactylation in the repair response post-MI remains unclear. We aimed to investigate whether histone lactylation induces reparative gene expression in monocytes early and remotely post-MI. Methods: Single-cell transcriptome data indicated that reparative genes were activated early and remotely in bone marrow and circulating monocytes before cardiac recruitment. Western blotting and immunofluorescence staining revealed increases in histone lactylation levels, including the previously identified histone H3K18 lactylation in monocyte-macrophages early post-MI. Through joint CUT&Tag and RNA-sequencing analyses, we identified Lrg1, Vegf-a , and IL-10 as histone H3K18 lactylation target genes. The increased modification and expression levels of these target genes post-MI were verified by chromatin immunoprecipitation-qPCR and reverse transcription-qPCR. Results: We demonstrated that histone lactylation regulates the anti-inflammatory and pro-angiogenic dual activities of monocyte-macrophages by facilitating reparative gene transcription and confirmed that histone lactylation favors a reparative environment and improves cardiac function post-MI. Furthermore, we explored the potential positive role of m...