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Deficiency in the nuclear long noncoding RNA Charme causes myogenic defects and heart remodeling in mice

机译:核长非编码RNA缺乏 魅力导致小鼠肌原性缺陷和心脏重塑

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摘要

Myogenesis is a highly regulated process that involves the conversion of progenitor cells into multinucleated myofibers. Besides proteins and miRNAs, long noncoding RNAs (lncRNAs) have been shown to participate in myogenic regulatory circuitries. Here, we characterize a murine chromatin‐associated muscle‐specific lncRNA, Charme, which contributes to the robustness of the myogenic program in vitro and in vivo. In myocytes, Charme depletion triggers the disassembly of a specific chromosomal domain and the downregulation of myogenic genes contained therein. Notably, several Charme‐sensitive genes are associated with human cardiomyopathies and Charme depletion in mice results in a peculiar cardiac remodeling phenotype with changes in size, structure, and shape of the heart. Moreover, the existence of an orthologous transcript in human, regulating the same subset of target genes, suggests an important and evolutionarily conserved function for Charme. Altogether, these data describe a new example of a chromatin‐associated lncRNA regulating the robustness of skeletal and cardiac myogenesis.
机译:肌发生是一个高度调控的过程,涉及祖细胞向多核肌纤维的转化。除蛋白质和miRNA外,长非编码RNA(lncRNA)已显示参与肌源性调节电路。在这里,我们表征了鼠染色质相关的肌肉特异性lncRNA Charme,它有助于在体外和体内的成肌程序的鲁棒性。在肌细胞中,魅力枯竭会触发特定染色体结构域的拆卸,并触发其中所含的成肌基因的下调。值得注意的是,一些Charme敏感基因与人类心肌病相关,并且Charme耗竭会导致小鼠特殊的心脏重塑表型,并改变心脏的大小,结构和形状。此外,人类中直向同源转录物的存在,调节着靶基因的相同子集,表明Charme具有重要且进化上保守的功能。总而言之,这些数据描述了与染色质相关的lncRNA调节骨骼和心脏肌生成的健壮性的新例子。

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