首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Abro1 maintains genome stability and limits replication stress by protecting replication fork stability
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Abro1 maintains genome stability and limits replication stress by protecting replication fork stability

机译:ABRO1通过保护复制叉稳定性来保持基因组稳定性并限制复制应力

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Protection of the stalled replication fork is crucial for responding to replication stress and minimizing its impact on chromosome instability, thus preventing diseases, including cancer. We found a new component, Abro1, in the protection of stalled replication fork integrity. Abro1 deficiency results in increased chromosome instability, and Abro1-null mice are tumor-prone. We show that Abro1 protects stalled replication fork stability by inhibiting DNA2 nuclease/WRN helicase-mediated degradation of stalled forks. Depletion of RAD51 prevents the DNA2/WRN-dependent degradation of stalled forks in Abro1-deficient cells. This mechanism is distinct from the BRCA2-dependent fork protection pathway, in which stable RAD51 filament formation prevents MRE11-dependent degradation of the newly synthesized DNA at stalled forks. Thus, our data reveal a new aspect of regulated protection of stalled replication forks that involves Abro1.
机译:防止复制叉的保护对于应对复制应力并最大限度地减少其对染色体不稳定的影响至关重要,从而预防包括癌症的疾病。 我们发现了一个新的组件,ABRO1在保护停滞复制叉完整方面。 ABRO1缺乏导致染色体不稳定性增加,并且ABRO1-NULL小鼠是肿瘤倾向的。 我们表明ABRO1通过抑制DNA2核酸酶/ WRN螺旋酶介导的停滞叉的降解来保护停滞的复制叉稳定性。 RAD51的耗竭可防止DNA2 / WRN依赖性降解在ABRO1缺陷细胞中的停滞叉。 该机制与BRCA2依赖性叉保护途径不同,其中稳定的RAD51长丝形成可防止新合成的DNA在停滞叉上的MRE11依赖性降解。 因此,我们的数据揭示了涉及ABRO1的被停滞的复制叉的监管保护的新方面。

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