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留意复制差距。

Mind the replication gap.

作者信息

Mocanu Camelia, Chan Kok-Lung

机构信息

Chromosome Dynamics and Stability Group, Genome Damage and Stability Centre, University of Sussex, Brighton BN1 7BG, UK.

出版信息

R Soc Open Sci. 2021 Jun 9;8(6):201932. doi: 10.1098/rsos.201932.

Abstract

Unlike bacteria, mammalian cells need to complete DNA replication before segregating their chromosomes for the maintenance of genome integrity. Thus, cells have evolved efficient pathways to restore stalled and/or collapsed replication forks during S-phase, and when necessary, also to delay cell cycle progression to ensure replication completion. However, strong evidence shows that cells can proceed to mitosis with incompletely replicated DNA when under mild replication stress (RS) conditions. Consequently, the incompletely replicated genomic gaps form, predominantly at common fragile site regions, where the converging fork-like DNA structures accumulate. These branched structures pose a severe threat to the faithful disjunction of chromosomes as they physically interlink the partially duplicated sister chromatids. In this review, we provide an overview discussing how cells respond and deal with the under-replicated DNA structures that escape from the S/G2 surveillance system. We also focus on recent research of a mitotic break-induced replication pathway (also known as mitotic DNA repair synthesis), which has been proposed to operate during prophase in an attempt to finish DNA synthesis at the under-replicated genomic regions. Finally, we discuss recent data on how mild RS may cause chromosome instability and mutations that accelerate cancer genome evolution.

摘要

与细菌不同,哺乳动物细胞需要在分离染色体之前完成DNA复制,以维持基因组的完整性。因此,细胞进化出了有效的途径来修复S期停滞和/或崩溃的复制叉,并且在必要时还会延迟细胞周期进程以确保复制完成。然而,有力的证据表明,在轻度复制应激(RS)条件下,细胞可以携带未完全复制的DNA进入有丝分裂。因此,未完全复制的基因组缺口形成,主要集中在常见的脆性位点区域,在这些区域会积累类似叉状的汇聚DNA结构。这些分支结构对染色体的准确分离构成了严重威胁,因为它们在物理上连接了部分复制的姐妹染色单体。在这篇综述中,我们概述了细胞如何应对和处理逃避S/G2监测系统的未充分复制的DNA结构。我们还重点关注了有丝分裂断裂诱导复制途径(也称为有丝分裂DNA修复合成)的最新研究,该途径被认为在前期起作用,试图在未充分复制的基因组区域完成DNA合成。最后,我们讨论了关于轻度RS如何导致染色体不稳定和突变从而加速癌症基因组进化的最新数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b9d/8188003/6d237e8e5e0c/rsos201932f01.jpg

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