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一个动态的肌动蛋白依赖的核骨架和细胞身份。

A dynamic actin-dependent nucleoskeleton and cell identity.

机构信息

Science Division, Biology Program, New York University Abu Dhabi (NYUAD), PO Box 129188, Abu Dhabi United Arab Emirates.

Department of Biology, New York University, 100 Washington Square East, 1009 Silver Center, New York, NY 10003, USA.

出版信息

J Biochem. 2021 Apr 18;169(3):243-257. doi: 10.1093/jb/mvaa133.

Abstract

Actin is an essential regulator of cellular functions. In the eukaryotic cell nucleus, actin regulates chromatin as a bona fide component of chromatin remodelling complexes, it associates with nuclear RNA polymerases to regulate transcription and is involved in co-transcriptional assembly of nascent RNAs into ribonucleoprotein complexes. Actin dynamics are, therefore, emerging as a major regulatory factor affecting diverse cellular processes. Importantly, the involvement of actin dynamics in nuclear functions is redefining the concept of nucleoskeleton from a rigid scaffold to a dynamic entity that is likely linked to the three-dimensional organization of the nuclear genome. In this review, we discuss how nuclear actin, by regulating chromatin structure through phase separation may contribute to the architecture of the nuclear genome during cell differentiation and facilitate the expression of specific gene programs. We focus specifically on mitochondrial genes and how their dysregulation in the absence of actin raises important questions about the role of cytoskeletal proteins in regulating chromatin structure. The discovery of a novel pool of mitochondrial actin that serves as 'mitoskeleton' to facilitate organization of mtDNA supports a general role for actin in genome architecture and a possible function of distinct actin pools in the communication between nucleus and mitochondria.

摘要

肌动蛋白是细胞功能的重要调节因子。在真核细胞核中,肌动蛋白作为染色质重塑复合物的一个真正组成部分,调节染色质,它与核 RNA 聚合酶结合,调节转录,并参与新生 RNA 到核糖核蛋白复合物的共转录组装。因此,肌动蛋白动力学正在成为影响多种细胞过程的主要调节因子。重要的是,肌动蛋白动力学参与核功能正在重新定义核骨架的概念,从刚性支架转变为动态实体,这可能与核基因组的三维组织有关。在这篇综述中,我们讨论了核肌动蛋白如何通过相分离调节染色质结构,从而有助于细胞分化过程中核基因组的结构,并促进特定基因程序的表达。我们特别关注线粒体基因,以及在没有肌动蛋白的情况下它们的失调如何引发关于细胞骨架蛋白在调节染色质结构中的作用的重要问题。新型线粒体肌动蛋白池的发现作为“线粒体骨架”有助于 mtDNA 的组织,支持肌动蛋白在基因组结构中的一般作用,以及不同肌动蛋白池在核与线粒体之间通讯中的可能功能。

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