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Esc2 促进端粒稳定性以应对 DNA 复制应激。

Esc2 promotes telomere stability in response to DNA replication stress.

机构信息

Center for Chromosome Stability, Department of Cellular and Molecular Medicine, University of Copenhagen, Panum Institute, 2200 Copenhagen N, Denmark.

Center for Healthy Aging, Department of Cellular and Molecular Medicine, University of Copenhagen, Panum Institute, 2200 Copenhagen N, Denmark.

出版信息

Nucleic Acids Res. 2019 May 21;47(9):4597-4611. doi: 10.1093/nar/gkz158.

Abstract

Telomeric regions of the genome are inherently difficult-to-replicate due to their propensity to generate DNA secondary structures and form nucleoprotein complexes that can impede DNA replication fork progression. Precisely how cells respond to DNA replication stalling within a telomere remains poorly characterized, largely due to the methodological difficulties in analysing defined stalling events in molecular detail. Here, we utilized a site-specific DNA replication barrier mediated by the 'Tus/Ter' system to define the consequences of DNA replication perturbation within a single telomeric locus. Through molecular genetic analysis of this defined fork-stalling event, coupled with the use of a genome-wide genetic screen, we identified an important role for the SUMO-like domain protein, Esc2, in limiting genome rearrangements at a telomere. Moreover, we showed that these rearrangements are driven by the combined action of the Mph1 helicase and the homologous recombination machinery. Our findings demonstrate that chromosomal context influences cellular responses to a stalled replication fork and reveal protective factors that are required at telomeric loci to limit DNA replication stress-induced chromosomal instability.

摘要

基因组的端粒区域由于其产生 DNA 二级结构和形成核蛋白复合物的倾向,从而难以复制,这些结构和复合物会阻碍 DNA 复制叉的前进。细胞如何应对端粒内的 DNA 复制停滞,目前仍知之甚少,这主要是由于在分子水平上分析特定的停滞事件存在方法学上的困难。在这里,我们利用由“ Tus/Ter ”系统介导的特定 DNA 复制障碍来定义单个端粒位点内 DNA 复制扰动的后果。通过对这个定义明确的叉状停滞事件进行分子遗传学分析,再加上使用全基因组遗传筛选,我们确定了 SUMO 样结构域蛋白 Esc2 在限制端粒处基因组重排方面的重要作用。此外,我们还表明,这些重排是由 Mph1 解旋酶和同源重组机制共同作用驱动的。我们的研究结果表明,染色体环境会影响细胞对停滞复制叉的反应,并揭示了在端粒处需要限制 DNA 复制应激诱导的染色体不稳定性的保护因子。

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