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首页> 外文期刊>Scientific reports. >Chromosome 19 microRNA cluster enhances cell reprogramming by inhibiting epithelial-to-mesenchymal transition
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Chromosome 19 microRNA cluster enhances cell reprogramming by inhibiting epithelial-to-mesenchymal transition

机译:染色体19 microRNA簇通过抑制上皮对间充质转换来增强细胞重编程

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摘要

During implantation, cytotrophoblasts undergo epithelial-to-mesenchymal transition (EMT) as they differentiate into invasive extravillous trophoblasts (EVTs). The primate-specific microRNA cluster on chromosome 19 (C19MC) is exclusively expressed in the placenta, embryonic stem cells and certain cancers however, its role in EMT gene regulation is unknown. In situ hybridization for miR-517a/c, a C19MC cistron microRNA, in first trimester human placentas displayed strong expression in villous trophoblasts and a gradual decrease from proximal to distal cell columns as cytotrophoblasts differentiate into invasive EVTs. To investigate the role of C19MC in the regulation of EMT genes, we employed the CRISPR/dCas9 Synergistic Activation Mediator (SAM) system, which induced robust transcriptional activation of the entire C19MC cistron and resulted in suppression of EMT associated genes. Exposure of human iPSCs to hypoxia or differentiation of iPSCs into either cytotrophoblast-stem-like cells or EVT-like cells under hypoxia reduced C19MC expression and increased EMT genes. Furthermore, transcriptional activation of the C19MC cistron induced the expression of OCT4 and FGF4 and accelerated cellular reprogramming. This study establishes the CRISPR/dCas9 SAM as a powerful tool that enables activation of the entire C19MC cistron and uncovers its novel role in suppressing EMT genes critical for maintaining the epithelial cytotrophoblasts stem cell phenotype.
机译:在植入过程中,细胞萎缩性经过上皮 - 间充质转变(EMT),因为它们分化为侵袭性外向性滋养细胞(EVTS)。染色体19(C19MC)上的灵长类动物特异性微小RNA簇在胎盘,胚胎干细胞和某些癌症中仅表达,但其在EMT基因调节中的作用是未知的。原位杂交MiR-517A / C,C19MC Cistron MicroRNA,在前三个月的人胎盘中显示出绒毛滋养细胞的强烈表达,并且由于细胞脱发分为侵袭性EVTS,从潜伏的滋养细胞中逐渐减少到远端细胞柱。为了研究C19MC在EMT基因调节中的作用,我们使用CRISPR / DCAS9协同激活介质(SAM)系统,该系统诱导整个C19MC CISTRON的鲁棒转录激活,并导致抑制EMT相关基因。将人IPSC暴露于缺氧下的C19MC表达和eMT基因下的缺氧中IPSCS进入细胞博递 - 干燥样细胞或EVT样细胞的缺氧或eVT样细胞。此外,C19MC CISTRON的转录激活诱导OCT4和FGF4的表达,加速细胞重编程。本研究将CRISPR / DCAS9 SAM作为一种强大的工具,使得能够激活整个C19MC CISTRON并揭示其在抑制抑制其关键的EMT基因中的新作用,以保持上皮细胞培育干细胞表型。

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