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Mre11 dimers coordinate DNA end bridging and nuclease processing in double-strand-break repair

机译:Mre11二聚体在双链断裂修复中协调DNA末端桥联和核酸酶加工

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摘要

Mre11 forms the core of the multifunctional Mre11-Rad50-Nbs1 (MRN) complex that detects DNA double-strand breaks (DSBs), activates the ATM checkpoint kinase, and initiates homologous recombination (HR) repair of DSBs. To define the roles of Mre11 in both DNA bridging and nucleolytic processing during initiation of DSB repair, we combined small-angle X-ray scattering (SAXS) and crystal structures of Pyrococcus furiosus Mre11 dimers bound to DNA with mutational analyses of fission yeast Mre11. The Mre11 dimer adopts a four-lobed U-shaped structure that is critical for proper MRN complex assembly and for binding and aligning DNA ends. Further, mutations blocking Mre11 endonuclease activity impair cell survival after DSB induction without compromising MRN complex assembly or Mre11-dependant recruitment of Ctp1, an HR factor, to DSBs. These results show how Mre11 dimerization and nuclease activities initiate repair of DSBs and collapsed replication forks, as well as provide a molecular foundation for understanding cancer-causing Mre11 mutations in ataxia telangiectasia-like disorder (ATLD).
机译:Mre11形成多功能Mre11-Rad50-Nbs1(MRN)复合体的核心,该复合体可检测DNA双链断裂(DSB),激活ATM检查点激酶并启动DSB的同源重组(HR)修复。为了定义在DSB修复启动过程中Mre11在DNA桥接和核酸裂解过程中的作用,我们结合了裂变酵母Mre11的突变分析与小角X射线散射(SAXS)和与DNA结合的激烈热球菌Mre11二聚体的晶体结构。 Mre11二聚体采用四叶U形结构,这对于正确的MRN复杂装配以及对DNA末端的结合和排列至关重要。此外,阻断Mre11核酸内切酶活性的突变会损害DSB诱导后的细胞存活,而不会损害MRN复杂的装配或HR因子Ctp1依赖Mre11的募集到DSB。这些结果表明,Mre11二聚化和核酸酶活性如何启动DSB修复和复制叉折叠,并为理解共济失调性毛细血管扩张样疾病(ATLD)中引起癌症的Mre11突变提供了分子基础。

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