Chaudhury Indrajit, Koepp Deanna M
Department of Genetics, Cell Biology and Development, 321 Church St. SE, University of Minnesota, Minneapolis, MN 55455 USA.
Nucleic Acids Res. 2017 Mar 17;45(5):2558-2570. doi: 10.1093/nar/gkw1249.
The DNA replication or S-phase checkpoint monitors the integrity of DNA synthesis. Replication stress or DNA damage triggers fork stalling and checkpoint signaling to activate repair pathways. Recovery from checkpoint activation is critical for cell survival following DNA damage. Recovery from the S-phase checkpoint includes inactivation of checkpoint signaling and restart of stalled replication forks. Previous studies demonstrated that degradation of Mrc1, the Saccharomyces cerevisiae ortholog of human Claspin, is facilitated by the SCFDia2 ubiquitin ligase and is important for cell cycle re-entry after DNA damage-induced S-phase checkpoint activation. Here, we show that degradation of Mrc1 facilitated by the SCFDia2 complex is critical to restart stalled replication forks during checkpoint recovery. Using DNA fiber analysis, we showed that Dia2 functions with the Sgs1 and Mph1 helicases (orthologs of human BLM and FANCM, respectively) in the recombination-mediated fork restart pathway. In addition, Dia2 physically interacts with Sgs1 upon checkpoint activation. Importantly, failure to target Mrc1 for degradation during recovery inhibits Sgs1 chromatin association, but this can be alleviated by induced proteolysis of Mrc1 after checkpoint activation. Together, these studies provide new mechanistic insights into how cells recover from activation of the S-phase checkpoint.
DNA复制或S期检查点监测DNA合成的完整性。复制应激或DNA损伤会引发复制叉停滞和检查点信号传导,从而激活修复途径。从检查点激活中恢复对于DNA损伤后的细胞存活至关重要。从S期检查点恢复包括检查点信号传导的失活和停滞复制叉的重新启动。先前的研究表明,人Claspin的酿酒酵母同源物Mrc1的降解由SCFDia2泛素连接酶促进,并且对于DNA损伤诱导的S期检查点激活后的细胞周期重新进入很重要。在这里,我们表明由SCFDia2复合物促进的Mrc1降解对于检查点恢复期间重新启动停滞的复制叉至关重要。使用DNA纤维分析,我们表明Dia2在重组介导的叉重新启动途径中与Sgs1和Mph1解旋酶(分别是人BLM和FANCM的同源物)一起发挥作用。此外,在检查点激活时,Dia2与Sgs1发生物理相互作用。重要的是,在恢复过程中未能将Mrc1靶向降解会抑制Sgs1与染色质的结合,但这可以通过检查点激活后诱导的Mrc1蛋白水解来缓解。总之,这些研究为细胞如何从S期检查点激活中恢复提供了新的机制见解。