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CTCF 作为可变剪接的调节因子:老玩家的新把戏。

CTCF as a regulator of alternative splicing: new tricks for an old player.

机构信息

Gene & Stem Cell Therapy Program Centenary Institute, The University of Sydney, Camperdown, NSW 2050, Australia.

Department of Laboratory Medicine, Faculty of Applied Medical Sciences, Umm Al-Qura University, Makkah, Saudi Arabia.

出版信息

Nucleic Acids Res. 2021 Aug 20;49(14):7825-7838. doi: 10.1093/nar/gkab520.

Abstract

Three decades of research have established the CCCTC-binding factor (CTCF) as a ubiquitously expressed chromatin organizing factor and master regulator of gene expression. A new role for CTCF as a regulator of alternative splicing (AS) has now emerged. CTCF has been directly and indirectly linked to the modulation of AS at the individual transcript and at the transcriptome-wide level. The emerging role of CTCF-mediated regulation of AS involves diverse mechanisms; including transcriptional elongation, DNA methylation, chromatin architecture, histone modifications, and regulation of splicing factor expression and assembly. CTCF thereby appears to not only co-ordinate gene expression regulation but contributes to the modulation of transcriptomic complexity. In this review, we highlight previous discoveries regarding the role of CTCF in AS. In addition, we summarize detailed mechanisms by which CTCF mediates AS regulation. We propose opportunities for further research designed to examine the possible fate of CTCF-mediated alternatively spliced genes and associated biological consequences. CTCF has been widely acknowledged as the 'master weaver of the genome'. Given its multiple connections, further characterization of CTCF's emerging role in splicing regulation might extend its functional repertoire towards a 'conductor of the splicing orchestra'.

摘要

三十年来的研究已经确立了 CCCTC 结合因子(CTCF)作为一种普遍表达的染色质组织因子和基因表达的主要调节剂的地位。现在,CTCF 作为可变剪接(AS)调节剂的新作用已经出现。CTCF 已经直接和间接地与单个转录本和转录组水平的 AS 调节有关。CTCF 介导的 AS 调节的新兴作用涉及多种机制;包括转录延伸、DNA 甲基化、染色质结构、组蛋白修饰以及剪接因子表达和组装的调节。因此,CTCF 似乎不仅协调基因表达调控,而且有助于转录组复杂性的调节。在这篇综述中,我们强调了以前关于 CTCF 在 AS 中的作用的发现。此外,我们总结了 CTCF 介导 AS 调节的详细机制。我们提出了进一步研究的机会,旨在检查 CTCF 介导的可变剪接基因的可能命运及其相关的生物学后果。CTCF 已被广泛认为是“基因组的主要编织者”。鉴于其多种联系,进一步描述 CTCF 在剪接调控中的新兴作用可能会将其功能范围扩展到“剪接乐团的指挥”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cae/8373115/0d4bd584c14e/gkab520fig1.jpg

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