Inhibition of DYRK1A, via histone modification, promotes cardiomyocyte cell cycle activation and cardiac repair after myocardial infarction

H3K4me3 表观遗传学 生物 细胞周期 表观基因组 细胞生物学 组蛋白H3 转录组 组蛋白 P300-CBP转录因子 癌症研究 遗传学 细胞 基因表达 基因 组蛋白乙酰转移酶 DNA甲基化 发起人
作者
Cong Lan,Caiyu Chen,Shuang Qu,Nian Cao,Hao Luo,Cheng Yu,Na Wang,Yuanzheng Xue,Xuewei Xia,Chao Fan,Hongmei Ren,Yongjian Yang,Pedro A. José,Zaicheng Xu,Gengze Wu,Chunyu Zeng
出处
期刊:EBioMedicine [Elsevier]
卷期号:82: 104139-104139 被引量:29
标识
DOI:10.1016/j.ebiom.2022.104139
摘要

BackgroundWhile the adult mammalian heart undergoes only modest renewal through cardiomyocyte proliferation, boosting this process is considered a promising therapeutic strategy to repair cardiac injury. This study explored the role and mechanism of dual-specificity tyrosine regulated kinase 1A (DYRK1A) in regulating cardiomyocyte cell cycle activation and cardiac repair after myocardial infarction (MI).MethodsDYRK1A-knockout mice and DYRK1A inhibitors were used to investigate the role of DYRK1A in cardiomyocyte cell cycle activation and cardiac repair following MI. Additionally, we explored the underlying mechanisms by combining genome-wide transcriptomic, epigenomic, and proteomic analyses.FindingsIn adult mice subjected to MI, both conditional deletion and pharmacological inhibition of DYRK1A induced cardiomyocyte cell cycle activation and cardiac repair with improved cardiac function. Combining genome-wide transcriptomic and epigenomic analyses revealed that DYRK1A knockdown resulted in robust cardiomyocyte cell cycle activation (shown by the enhanced expression of many genes governing cell proliferation) associated with increased deposition of trimethylated histone 3 Lys4 (H3K4me3) and acetylated histone 3 Lys27 (H3K27ac) on the promoter regions of these genes. Mechanistically, via unbiased mass spectrometry, we discovered that WD repeat-containing protein 82 and lysine acetyltransferase 6A were key mediators in the epigenetic modification of H3K4me3 and H3K27ac and subsequent pro-proliferative transcriptome and cardiomyocyte cell cycle activation.InterpretationOur results reveal a significant role of DYRK1A in cardiac repair and suggest a drug target with translational potential for treating cardiomyopathy.FundingThis study was supported in part by grants from the National Natural Science Foundation of China (81930008, 82022005, 82070296, 82102834), National Key R&D Program of China (2018YFC1312700), Program of Innovative Research Team by the National Natural Science Foundation (81721001), and National Institutes of Health (5R01DK039308-31, 7R37HL023081-37, 5P01HL074940-11).
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