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Replication fork regression in vitro by the Werner syndrome protein (WRN): Holliday junction formation the effect of leading arm structure and a potential role for WRN exonuclease activity

机译:Werner综合征蛋白(WRN)在体外复制叉回归:霍利迪结形成前臂结构的影响以及WRN核酸外切酶活性的潜在作用

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摘要

The premature aging and cancer-prone disease Werner syndrome stems from loss of WRN protein function. WRN deficiency causes replication abnormalities, sensitivity to certain genotoxic agents, genomic instability and early replicative senescence in primary fibroblasts. As a RecQ helicase family member, WRN is a DNA-dependent ATPase and unwinding enzyme, but also possesses strand annealing and exonuclease activities. RecQ helicases are postulated to participate in pathways responding to replication blockage, pathways possibly initiated by fork regression. In this study, a series of model replication fork substrates were used to examine the fork regression capability of WRN. Our results demonstrate that WRN catalyzes fork regression and Holliday junction formation. This process is an ATP-dependent reaction that is particularly efficient on forks containing single-stranded gaps of at least 11–13 nt on the leading arm at the fork junction. Importantly, WRN exonuclease activity, by digesting the leading daughter strand, enhances regression of forks with smaller gaps on the leading arm, thus creating an optimal structure for regression. Our results suggest that the multiple activities of WRN cooperate to promote replication fork regression. These findings, along with the established cellular consequences of WRN deficiency, strongly support a role for WRN in regression of blocked replication forks.
机译:早衰和易患癌症的Werner综合征源于WRN蛋白功能的丧失。 WRN缺乏会导致原代成纤维细胞复制异常,对某些遗传毒性药物的敏感性,基因组不稳定和早期复制衰老。作为RecQ解旋酶家族成员,WRN是一种DNA依赖性ATPase和展开酶,但还具有链退火和核酸外切酶活性。假定RecQ解旋酶参与了对复制阻滞的应答途径,这可能是由fork回归引发的。在这项研究中,一系列的模型复制叉基板被用来检查WRN的叉回归能力。我们的结果表明,WRN催化叉回归和霍利迪结形成。此过程是ATP依赖的反应,在前叉交界处的前臂上包含至少11–13 nt的单链间隙的前叉特别有效。重要的是,通过消化前导子链,WRN核酸外切酶活性增强了前臂上具有较小间隙的叉子的回归,从而创造了回归的最佳结构。我们的结果表明,WRN的多种活动可以促进复制叉回归。这些发现以及已确定的WRN缺乏的细胞后果,强烈支持WRN在封闭复制叉的消退中的作用。

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