A hallmark of heart disease is gene dysregulation and reactivation of fetal gene programs. Reactivation of these fetal programs has compensatory effects during heart failure, depending on the type and stage of the underlying cardiomyopathy. Thousands of putative cardiac gene regulatory elements have been identified that may control these programs, but their functions are largely unknown. We profile genome-wide changes to gene expression and chromatin structure in cardiomyocytes derived from human pluripotent stem cells. We identify and characterize a gene regulatory element essential for the regulation of MYH6, which encodes human fetal myosin. Using chromatin conformation assays in combination with epigenome editing, we find that gene regulation is mediated by direct interaction between MYH6 and the enhancer. We also find that enhancer activation alters cardiomyocyte response to the hypertrophy-inducing peptide endothelin-1. Enhancer activation prevents polyploidization and changes in calcium dynamics following stress with endothelin-1. Collectively, these results identify regulatory mechanisms of cardiac gene expression programs that modulate cardiomyocyte maturation, cellular stress response, and could serve as potential therapeutic targets.
A gene regulatory element modulates myosin expression and controls cardiomyocyte response to stress.
基因调控元件调节肌球蛋白表达并控制心肌细胞对压力的反应
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作者:Anglen Taylor, Kaplow Irene M, Choi Baekgyu, Dewars Enya, Perelli Robin M, Hagy Kevin T, Tran Duc, Ramaker Megan E, Shah Svati, Jung Inkyung, Landstrom Andrew P, Karra Ravi, Diao Yarui, Gersbach Charles A
| 期刊: | bioRxiv | 影响因子: | 0.000 |
| 时间: | 2025 | 起止号: | 2025 Jul 20 |
| doi: | 10.1101/2025.07.19.665672 | 研究方向: | 细胞生物学 |
| 疾病类型: | 心肌炎 | ||
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