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Replication Fork Protection Factors Controlling R-Loop Bypass and Suppression

机译:控制R环旁路和抑制的复制叉保护因素

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摘要

Replication–transcription conflicts have been a well-studied source of genome instability for many years and have frequently been linked to defects in RNA processing. However, recent characterization of replication fork-associated proteins has revealed that defects in fork protection can directly or indirectly stabilize R-loop structures in the genome and promote transcription–replication conflicts that lead to genome instability. Defects in essential DNA replication-associated activities like topoisomerase, or the minichromosome maintenance (MCM) helicase complex, as well as fork-associated protection factors like the Fanconi anemia pathway, both appear to mitigate transcription–replication conflicts. Here, we will highlight recent advances that support the concept that normal and robust replisome function itself is a key component of mitigating R-loop coupled genome instability.
机译:多年来,复制-转录冲突一直是人们研究的基因组不稳定的根源,并且经常与RNA加工中的缺陷有关。但是,最近对复制叉相关蛋白的表征表明,叉保护中的缺陷可以直接或间接稳定基因组中的R环结构并促进导致基因组不稳定的转录复制冲突。必需的与DNA复制相关的活动的缺陷(如拓扑异构酶或微型染色体维持(MCM)解旋酶复合物)以及与叉相关的保护因子(如Fanconi贫血途径)的缺陷,都似乎减轻了转录-复制冲突。在这里,我们将重点介绍支持正常和健壮的复制体功能本身是缓解R环偶联基因组不稳定性的关键组成部分这一概念的最新进展。

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