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Deciphering synergistic regulatory networks of microRNAs in hESCs and fibroblasts

机译:在HESC和成纤维细胞中解读微润荷的协同监管网络

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MicroRNAs (miRNAs) play crucial roles in pluripotency and differentiation of human Embryonic Stem Cells (hESCs). However, synergism among multiple miRNAs and their regulatory effects on stem cells are largely unknown. We investigated the synergistic regulations among miRNAs, which are differentially expressed in hESCs and fibroblasts (Fibs) to gain deeper insights into the regulatory mechanisms of miRNA-miRNA synergism in the differentiation of hESCs into Fibs. In this study, we identified miRNA targets incorporating differential expression profiles of miRNAs and genes in hESCs-Fibs with miRNA targeting features followed by enrichment analysis. We then built the active miRNA-miRNA synergistic network (MMSN) integrating miRNA-miRNA synergistic pairs, which identified 16 miRNA-miRNA closed communities. Further, topology assessment, community overlapping and functional studies revealed hsa-miR-873-5p as an important pluripotent miRNA which might be hindering hESCs differentiation into Fibs by targeting regulators of epithelial to mesenchymal transition (EMT). On the other hand, synergism among hsa-miR-98-5p, hsa-let-7i-5p, hsa-let-7g-5p, hsa-miR-30a-3p and hsa-miR-29b-2-5p is predicted to be highly essential for promoting differentiation of hESCs in to Fibs. This study deepens our understanding of miRNA synergism and its regulatory impacts on properties of stem cells. (C) 2018 Elsevier B.V. All rights reserved.
机译:MicroRNAS(miRNA)在多能性和分化的人胚胎干细胞(HESC)中起重要作用。然而,多个miRNA之间的协同作用及其对干细胞的调节作用在很大程度上是未知的。我们调查了miRNA中的协同规定,其在HESC和成纤维细胞(FIB)中差异表达,以获得对MiRNA-miRNA协同作用的调节机制在HESC分化为FIB的情况下进一步了解。在该研究中,我们鉴定了将MiRNA和基因的差异表达谱的MiRNA靶标在HESC-FIB中,具有miRNA靶向特征,然后进行富集分析。然后,我们建立了积分的MiRNA-miRNA协同网络(MMSN),其集成了miRNA-miRNA协同对成对,其鉴定了16个miRNA-miRNA封闭的社区。此外,拓扑评估,社区重叠和功能研究显示HSA-MIR-873-5P作为一种重要的多能MiRNA,其通过靶向上皮细胞转换(EMT)的调节剂来阻碍HESCS分化为FIB。另一方面,预先预测HSA-MIR-98-5P,HSA-Let-7i-5P,HSA-Let-7G-5P,HSA-MIR-30A-3P和HSA-MIR-29B-2-5P之间的协同作用对促进HESC的分化对FIB来说是非常重要的。本研究深化了我们对miRNA协同作用的理解及其对干细胞性质的监管影响。 (c)2018年elestvier b.v.保留所有权利。

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