The MOE Key Laboratory of Biosystems Homeostasis & Protection, Zhejiang Provincial Key Laboratory for Cancer Molecular Cell Biology and Innovation Center for Cell Signaling Network, Life Sciences Institute, Zhejiang University, Hangzhou, Zhejiang 310058, China.
Department of Cell Biology and Department of General Surgery of Sir Run Run Shaw Hospital, School of Medicine, Zhejiang University, Hangzhou, Zhejiang 310058, China.
Mol Cell. 2021 Jan 7;81(1):198-211.e6. doi: 10.1016/j.molcel.2020.11.007. Epub 2020 Dec 8.
Replication fork reversal is a global response to replication stress in mammalian cells, but precisely how it occurs remains poorly understood. Here, we show that, upon replication stress, DNA topoisomerase IIalpha (TOP2A) is recruited to stalled forks in a manner dependent on the SNF2-family DNA translocases HLTF, ZRANB3, and SMARCAL1. This is accompanied by an increase in TOP2A SUMOylation mediated by the SUMO E3 ligase ZATT and followed by recruitment of a SUMO-targeted DNA translocase, PICH. Disruption of the ZATT-TOP2A-PICH axis results in accumulation of partially reversed forks and enhanced genome instability. These results suggest that fork reversal occurs via a sequential two-step process. First, HLTF, ZRANB3, and SMARCAL1 initiate limited fork reversal, creating superhelical strain in the newly replicated sister chromatids. Second, TOP2A drives extensive fork reversal by resolving the resulting topological barriers and via its role in recruiting PICH to stalled forks.
复制叉反转是哺乳动物细胞对复制压力的一种全局反应,但它是如何发生的仍知之甚少。在这里,我们表明,在复制压力下,DNA 拓扑异构酶 IIα(TOP2A)以依赖于 SNF2 家族 DNA 转位酶 HLTF、ZRANB3 和 SMARCAL1 的方式被募集到停滞的叉上。这伴随着由 SUMO E3 连接酶 ZATT 介导的 TOP2A 聚泛素化增加,随后是 SUMO 靶向 DNA 转位酶 PICH 的募集。破坏 ZATT-TOP2A-PICH 轴会导致部分反转叉的积累和增强的基因组不稳定性。这些结果表明,叉反转通过一个连续的两步过程发生。首先,HLTF、ZRANB3 和 SMARCAL1 启动有限的叉反转,在新复制的姐妹染色单体中产生超螺旋应变。其次,TOP2A 通过解决由此产生的拓扑障碍,并通过其在招募 PICH 到停滞叉上的作用,驱动广泛的叉反转。