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Epigenetic regulator RNF20 underlies temporal hierarchy of gene expression to regulate postnatal cardiomyocyte polarization

机译:表观遗传调节因子 RNF20 是基因表达的时间层次结构的基础,以调节出生后心肌细胞极化

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Differentiated cardiomyocytes (CMs) must undergo diverse morphological and functional changes during postnatal development. However, the mechanisms underlying initiation and coordination of these changes remain unclear. Here, we delineate an integrated, time-ordered transcriptional network that begins with expression of genes for cell-cell connections and leads to a sequence of structural, cell-cycle, functional, and metabolic transitions in mouse postnatal hearts. Depletion of histone H2B ubiquitin ligase RNF20 disrupts this gene network and impairs CM polarization. Subsequently, assay for transposase-accessible chromatin using sequencing (ATAC-seq) analysis confirmed that RNF20 contributes to chromatin accessibility in this context. As such, RNF20 is likely to facilitate binding of transcription factors at the promoters of genes involved in cell-cell connections and actin organization, which are crucial for CM polarization and functional integration. These results suggest that CM polarization is one of the earliest events during postnatal heart development and provide insights into how RNF20 regulates CM polarity and the postnatal gene program.
机译:分化型心肌细胞 (CM) 在出生后发育过程中必须经历不同的形态和功能变化。然而,启动和协调这些变化的机制尚不清楚。在这里,我们描绘了一个整合的、有时间顺序的转录网络,该网络从细胞间连接的基因表达开始,并导致小鼠出生后心脏中的一系列结构、细胞周期、功能和代谢转变。组蛋白 H2B 泛素连接酶 RNF20 的耗竭会破坏该基因网络并损害 CM 极化。随后,使用测序 (ATAC-seq) 分析测定转座酶可及性染色质的测定证实,RNF20 在这种情况下有助于染色质可及性。因此,RNF20 可能促进转录因子在参与细胞间连接和肌动蛋白组织的基因启动子的结合,这对 CM 极化和功能整合至关重要。这些结果表明,CM极化是产后心脏发育过程中最早的事件之一,并为RNF20如何调节CM极性和产后基因程序提供了见解。

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