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微小RNA-134-甲基-CpG结合结构域蛋白3轴调控多能性的诱导。

MiR-134-Mbd3 axis regulates the induction of pluripotency.

作者信息

Zhang Lei, Zheng Yongchao, Sun Yuanqing, Zhang Ying, Yan Jia, Chen Zhifeng, Jiang Hong

机构信息

Department of Anesthesiology, The Ninth People's Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, China.

出版信息

J Cell Mol Med. 2016 Jun;20(6):1150-8. doi: 10.1111/jcmm.12805. Epub 2016 Feb 29.

Abstract

MicroRNAs (miRNAs) are post-transcriptional modulators of gene expression and play an important role in reprogramming process; however, relatively little is known about the underlying regulatory mechanism of miRNAs on how they epigenetically modulate reprogramming and pluripotency. Here, we report that the expression level of microRNA-134 (miR-134) was low in mouse embryonic stem cells (mESCs) but significantly up-regulated during neural differentiation, while down-regulated during the induction of induced pluripotent stem cells (iPSCs) from neural progenitor cells (NPCs). Inhibition of miR-134 by miR-134 sponge promoted the efficiency of reprogramming which also was highly similar to mESCs. On the contrary, up-regulation of miR-134 repressed iPSCs induction. We also found that inhibition of miR-134 promoted the maturation of pre-iPSCs and increased its pluripotency. We also showed that miR-134 can directly target to the pluripotency related factor Methyl-CpG-binding domain protein 3 (Mdb3) 3' untranslated regions (3' UTR) to down-regulate its expression. And Mbd3 was found to promote the induction of iPSCs and could block the repression of reprogramming caused by overexpression of miR-134. This work revealed the critical function of miR-134-Mbd3 axis on regulating reprogramming and pluripotency of iPSCs derived from the NPCs, and might provide an insight into the miR-134-Mbd3 axis on regulating the iPSCs quality for further clinical treatment.

摘要

微小RNA(miRNA)是基因表达的转录后调节因子,在重编程过程中发挥重要作用;然而,关于miRNA如何在表观遗传水平上调节重编程和多能性的潜在调控机制,我们了解得还相对较少。在此,我们报道,微小RNA - 134(miR - 134)在小鼠胚胎干细胞(mESC)中的表达水平较低,但在神经分化过程中显著上调,而在从神经祖细胞(NPC)诱导生成诱导多能干细胞(iPSC)的过程中则下调。通过miR - 134海绵抑制miR - 134可提高重编程效率,且该效率与mESC高度相似。相反,miR - 134的上调则抑制iPSC的诱导。我们还发现,抑制miR - 134可促进前iPSC的成熟并增强其多能性。我们还表明,miR - 134可直接靶向多能性相关因子甲基化CpG结合结构域蛋白3(Mdb3)的3'非翻译区(3'UTR)以下调其表达。并且发现Mbd3可促进iPSC的诱导,并能阻断由miR - 134过表达导致的重编程抑制。这项工作揭示了miR - 134 - Mbd3轴在调节源自NPC的iPSC的重编程和多能性方面的关键作用,并可能为miR - 134 - Mbd3轴在调节iPSC质量以用于进一步临床治疗方面提供见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9920/4882991/b8a1552013d4/JCMM-20-1150-g001.jpg

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