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DNA复制过程中的复制稳定性和正常叉速需要BLM的类泛素化修饰。

BLM Sumoylation Is Required for Replication Stability and Normal Fork Velocity During DNA Replication.

作者信息

de Renty Christelle, Pond Kelvin W, Yagle Mary K, Ellis Nathan A

机构信息

University of Arizona Cancer Center, University of Arizona, Tucson, AZ, United States.

Department of Cellular and Molecular Medicine, University of Arizona, Tucson, AZ, United States.

出版信息

Front Mol Biosci. 2022 Jul 1;9:875102. doi: 10.3389/fmolb.2022.875102. eCollection 2022.

Abstract

BLM is sumoylated in response to replication stress. We have studied the role of BLM sumoylation in physiologically normal and replication-stressed conditions by expressing in BLM-deficient cells a BLM with SUMO acceptor-site mutations, which we refer to as SUMO-mutant BLM cells. SUMO-mutant BLM cells exhibited multiple defects in both stressed and unstressed DNA replication conditions, including, in hydroxyurea-treated cells, reduced fork restart and increased fork collapse and, in untreated cells, slower fork velocity and increased fork instability as assayed by track-length asymmetry. We further showed by fluorescence recovery after photobleaching that SUMO-mutant BLM protein was less dynamic than normal BLM and comprised a higher immobile fraction at collapsed replication forks. BLM sumoylation has previously been linked to the recruitment of RAD51 to stressed forks in hydroxyurea-treated cells. An important unresolved question is whether the failure to efficiently recruit RAD51 is the explanation for replication stress in untreated SUMO-mutant BLM cells.

摘要

BLM在应对复制应激时会发生SUMO化修饰。我们通过在BLM缺陷细胞中表达具有SUMO受体位点突变的BLM(我们将其称为SUMO突变型BLM细胞),研究了BLM SUMO化修饰在生理正常和复制应激条件下的作用。SUMO突变型BLM细胞在应激和非应激DNA复制条件下均表现出多种缺陷,包括在羟基脲处理的细胞中,叉形结构重启减少、叉形结构崩溃增加,以及在未处理的细胞中,通过轨迹长度不对称性测定,叉形结构速度减慢且叉形结构不稳定性增加。我们通过光漂白后的荧光恢复进一步表明,SUMO突变型BLM蛋白的动态性低于正常BLM,并且在崩溃的复制叉处包含更高比例的固定部分。先前已将BLM SUMO化修饰与羟基脲处理的细胞中RAD51募集到应激叉形结构联系起来。一个重要的未解决问题是,未能有效募集RAD51是否是未处理的SUMO突变型BLM细胞中复制应激的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ae1/9284272/08d901b8a31a/fmolb-09-875102-g001.jpg

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