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非编码 RNA 在多能性和重编程中的调控作用。

Noncoding RNAs in the Regulation of Pluripotency and Reprogramming.

机构信息

Federal Research Center Institute of Cytology and Genetics, The Siberian Branch of the Russian Academy of Sciences, 10 Lavrentyeva Ave., Novosibirsk, 630090, Russia.

E.Meshalkin National medical research center, Ministry of Healthcare of the Russian Federation, 15 Rechkunovskaya St., Novosibirsk, 630055, Russia.

出版信息

Stem Cell Rev Rep. 2018 Feb;14(1):58-70. doi: 10.1007/s12015-017-9782-9.

Abstract

Pluripotent stem cells have great potential for developmental biology and regenerative medicine. Embryonic stem cells, which are obtained from blastocysts, and induced pluripotent stem cells, which are generated by the reprogramming of somatic cells, are two main types of pluripotent cells. It is important to understand the regulatory network that controls the pluripotency state and reprogramming process. Various types of noncoding RNAs (ncRNAs) have emerged as substantial components of regulatory networks. The most studied class of ncRNAs in the context of pluripotency and reprogramming is microRNAs (miRNAs). In addition to canonical microRNAs, other types of small RNAs with miRNA-like function are expressed in PSCs. Another class of ncRNAs, long ncRNAs, are also involved in pluripotency and reprogramming regulation. Thousands of ncRNAs have been annotated to date, and a significant number of the molecules do not have known function. In this review, we briefly summarized recent advances in this field and described existing genome-editing approaches to study ncRNA functions.

摘要

多能干细胞在发育生物学和再生医学中有很大的潜力。胚胎干细胞来源于囊胚,而诱导多能干细胞则通过体细胞重编程产生,是两种主要的多能细胞类型。了解控制多能状态和重编程过程的调控网络非常重要。各种类型的非编码 RNA(ncRNA)已成为调控网络的重要组成部分。在多能性和重编程的背景下,研究最多的一类 ncRNA 是 microRNAs(miRNAs)。除了典型的 microRNAs 外,PSCs 中还表达了其他具有 miRNA 样功能的小分子 RNA。另一类 ncRNA,长 ncRNA,也参与多能性和重编程调控。迄今为止,已经注释了数千种 ncRNA,其中很大一部分分子的功能尚不清楚。在这篇综述中,我们简要总结了该领域的最新进展,并描述了现有的基因组编辑方法来研究 ncRNA 的功能。

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