肿瘤中的多梳蛋白:多面功能和调节策略。

NAR Cancer Pub Date : 2021-12-01 DOI:10.1093/narcan/zcab039
Sijie Wang, Sandra C Ordonez-Rubiano, Alisha Dhiman, Guanming Jiao, Brayden P Strohmier, Casey J Krusemark, Emily C Dykhuizen
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引用次数: 10

摘要

多梳抑制复合物(PRCs)是由不同亚基组合组成的数十种(如果不是数百种)蛋白质复合物的异质集合。prc是发育过程中对细胞类型特异性很重要的转录抑制因子,因此,在癌症中通常被错误调节。PRCs一般分为具有组蛋白泛素连接酶活性的PRC1和具有组蛋白甲基转移酶活性的PRC2;然而,个体PRCs,特别是高度多样化的PRC1s,改变基因表达的机制并不总是很清楚。在这里,我们回顾了目前对PRC如何单独或共同作用以建立和维持基因抑制的理解,单个PRC亚基的生化贡献,不同癌症中PRC功能的错误调节,以及当前调节PRC活性的策略。增加对PRC功能的机制理解,以及单个PRC亚基的癌症特异性作用,将发现更好的癌症治疗靶点和策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Polycomb group proteins in cancer: multifaceted functions and strategies for modulation.

Polycomb group proteins in cancer: multifaceted functions and strategies for modulation.

Polycomb group proteins in cancer: multifaceted functions and strategies for modulation.

Polycomb group proteins in cancer: multifaceted functions and strategies for modulation.

Polycomb repressive complexes (PRCs) are a heterogenous collection of dozens, if not hundreds, of protein complexes composed of various combinations of subunits. PRCs are transcriptional repressors important for cell-type specificity during development, and as such, are commonly mis-regulated in cancer. PRCs are broadly characterized as PRC1 with histone ubiquitin ligase activity, or PRC2 with histone methyltransferase activity; however, the mechanism by which individual PRCs, particularly the highly diverse set of PRC1s, alter gene expression has not always been clear. Here we review the current understanding of how PRCs act, both individually and together, to establish and maintain gene repression, the biochemical contribution of individual PRC subunits, the mis-regulation of PRC function in different cancers, and the current strategies for modulating PRC activity. Increased mechanistic understanding of PRC function, as well as cancer-specific roles for individual PRC subunits, will uncover better targets and strategies for cancer therapies.

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