A PARylation-phosphorylation cascade promotes TOPBP1 loading and RPA-RAD51 exchange in homologous recombination
A PARylation-phosphorylation cascade promotes TOPBP1 loading and RPA-RAD51 exchange in homologous recombination
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PARylation-磷酸化级联促进同源重组中的 TOPBP1 加载和 RPA-RAD51 交换
DOI:
10.1016/j.molcel.2022.04.031
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发表时间:
2022
期刊:
影响因子:
16
通讯作者:
Lei Shi
中科院分区:
文献类型:
--
作者:
Jiao Zhao;Shanshan Tian;Qiushi Guo;Kaiwen Bao;Guohui Yu;Xiaodan Wang;Xilin Shen;Jieyou Zhang;Jiaxin Chen;Ying Yang;Ling Liu;Xiangchun Li;Jihui Hao;Na Yang;Zhe Liu;Ding Ai;Jie Yang;Yi Zhu;Zhi Yao;Shuai Ma;Kai Zhang;Lei Shi
The efficiency of homologous recombination (HR) in the repair of DNA double-strand breaks (DSBs) is closely associated with genome stability and tumor response to chemotherapy. While many factors have been functionally characterized in HR, such as TOPBP1, their precise regulation remains unclear. Here, we report that TOPBP1 interacts with the RNA-binding protein HTATSF1 in a cell-cycle- and phosphorylation-dependent manner. Mechanistically, CK2 phosphorylates HTATSF1 to facilitate binding to TOPBP1, which promotes S-phase-specific TOPBP1 recruitment to damaged chromatin and subsequent RPA/RAD51-dependent HR, genome integrity, and cancer-cell viability. The localization of HTATSF1-TOPBP1 to DSBs is potentially independent of the transcription-coupled RNA-binding and processing capacity of HTATSF1 but rather relies on the recognition of poly(ADP-ribosyl)ated RPA by HTATSF1, which can be blunted with PARP inhibitors. Together, our study provides a mechanistic insight into TOPBP1 loading at HR-prone DSB sites via HTATSF1 and reveals how RPA-RAD51 exchange is tuned by a PARylation-phosphorylation cascade.