DNA复制
同源重组
复制蛋白A
生物
DNA
DNA修复
细胞生物学
真核细胞DNA复制
原点识别复合体
复制因子C
染色体复制控制
分子生物学
遗传学
DNA结合蛋白
基因
转录因子
作者
Xuejie Wang,Yang Dong,Xiaocong Zhao,Jinbao Li,Jordan Lee,Zhenxin Yan,Shuangshuang Yang,Wenqiang Wu,Xi‐Miao Hou,Guang‐Xue Liu,Xinghua Zhang,Lun Song,Xuejuan Wang,Qing Li,Grzegorz Ira,Xinghua Zhang,Xuefeng Chen
标识
DOI:10.1073/pnas.2106393118
摘要
Single-stranded DNA (ssDNA) covered with the heterotrimeric Replication Protein A (RPA) complex is a central intermediate of DNA replication and repair. How RPA is regulated to ensure the fidelity of DNA replication and repair remains poorly understood. Yeast Rtt105 is an RPA-interacting protein required for RPA nuclear import and efficient ssDNA binding. Here, we describe an important role of Rtt105 in high-fidelity DNA replication and recombination and demonstrate that these functions of Rtt105 primarily depend on its regulation of RPA. The deletion of RTT105 causes elevated spontaneous DNA mutations with large duplications or deletions mediated by microhomologies. Rtt105 is recruited to DNA double-stranded break (DSB) ends where it promotes RPA assembly and homologous recombination repair by gene conversion or break-induced replication. In contrast, Rtt105 attenuates DSB repair by the mutagenic single-strand annealing or alternative end joining pathway. Thus, Rtt105-mediated regulation of RPA promotes high-fidelity replication and recombination while suppressing repair by deleterious pathways. Finally, we show that the human RPA-interacting protein hRIP-α, a putative functional homolog of Rtt105, also stimulates RPA assembly on ssDNA, suggesting the conservation of an Rtt105-mediated mechanism.
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