Dynamic regulation of small RNAome during the early stage of cardiac differentiation from pluripotent embryonic stem cells

Yue Li , An Zeng , Ge Li , Ya-Na Guan , Huang-Tian Yang , Bairong Shen , Qing Jing
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引用次数: 14

Abstract

Embryonic stem cells (mESCs), having potential to differentiate into three germ-layer cells including cardiomyocytes, shall be a perfect model to help understanding heart development. Here, using small RNA deep sequencing, we studied the small RNAome in the early stage of mouse cardiac differentiation. We found that the expression pattern of most microRNA (miRNA) were highly enriched at the beginning and declined thereafter, some were still insufficiently expressed on day 6, and most miRNAs recovered in the following days. When pluripotent embryonic stem cells are differentiating to cardiomyocytes, targeted genes are concentrated on TGF, WNT and cytoskeletal remodeling pathway. The pathway and network of dynamically changed target genes of the miRNAs at different time points were also investigated. Furthermore, we demonstrated that small rDNA-derived RNAs (srRNAs) were significantly up-regulated during differentiation, especially in stem cells. The pathways of srRNAs targeted genes were also presented. We described the existence and the differential expression of transfer RNA (tRNA), Piwi-interacting RNA (piRNA) and Endogenous siRNAs (endo-siRNAs) in this process. This study reports the genome-wide small RNAome profile, and provides a uniquely comprehensive view of the small RNA regulatory network that governs embryonic stem cell differentiation and cardiac development.

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多能胚胎干细胞心脏分化早期小rna组的动态调控
胚胎干细胞(mESCs)具有分化为包括心肌细胞在内的三种生殖层细胞的潜力,将成为帮助理解心脏发育的完美模型。在这里,我们使用小RNA深度测序,研究了小鼠心脏分化早期的小RNA组。我们发现,大多数microRNA (miRNA)的表达模式在开始时高度富集,随后下降,部分miRNA在第6天仍然表达不足,大多数miRNA在接下来的几天恢复。在多能胚胎干细胞向心肌细胞分化过程中,靶向基因主要集中在TGF、WNT和细胞骨架重塑途径。研究了不同时间点mirna靶基因动态变化的通路和网络。此外,我们证明了小rna衍生的rna (srrna)在分化过程中显着上调,特别是在干细胞中。并介绍了srrna靶向基因的通路。我们描述了在这一过程中转运RNA (tRNA)、piwi相互作用RNA (piRNA)和内源性sirna (endon - sirna)的存在和差异表达。本研究报告了全基因组小RNA组谱,并提供了一个独特的综合观点,小RNA调控网络,控制胚胎干细胞分化和心脏发育。
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