复制子
DNA复制
真核细胞DNA复制
基因复制
遗传学
生物
染色体复制控制
基因组
DNA再复制
复制前复合体
DNA损伤
DNA
复制的起源
基因
拓扑(电路)
计算生物学
数学
组合数学
作者
Andrea Keszthelyi,Sahar Mansoubi,Alex Whale,Jonathan Houseley,Jonathan Baxter
标识
DOI:10.1073/pnas.2413631121
摘要
The fork protection complex (FPC), composed of Mrc1, Tof1, and Csm3, supports rapid and stable DNA replication. Here, we show that FPC activity also introduces DNA damage by increasing DNA topological stress during replication. Mrc1 action increases DNA topological stress during plasmid replication, while Mrc1 or Tof1 activity causes replication stress and DNA damage within topologically constrained regions. We show that the recruitment of Top1 to the fork by Tof1 suppresses the DNA damage generated in these loci. While FPC activity introduces some DNA damage due to increased topological stress, the FPC is also necessary to prevent DNA damage in long replicons across the genome, indicating that the FPC is required for complete and faithful genome duplication. We conclude that FPC regulation must balance ensuring full genome duplication through rapid replication with minimizing the consequential DNA topological stress–induced DNA damage caused by rapid replication through constrained regions.
科研通智能强力驱动
Strongly Powered by AbleSci AI