首页> 美国卫生研究院文献>other >Double-Strand Breaks Induce Homologous Recombinational Repair of Interstrand Cross-Links via Cooperation of MSH2 ERCC1-XPF REV3 and the Fanconi Anemia Pathway
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Double-Strand Breaks Induce Homologous Recombinational Repair of Interstrand Cross-Links via Cooperation of MSH2 ERCC1-XPF REV3 and the Fanconi Anemia Pathway

机译:双链断裂通过MSH2ERCC1-XPFREV3和Fanconi贫血途径的协同作用对链间交叉链进行同源重组修复

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摘要

DNA interstrand cross-linking agents have been widely used in chemotherapeutic treatment of cancer. The majority of interstrand cross-links (ICLs) in mammalian cells are removed via a complex process that involves the formation of double strand breaks at replication forks, incision of the ICL, and subsequent error-free repair by homologous recombination. How double strand breaks effect the removal of ICLs and the downstream homologous recombination process is not clear. Here, we describe a plasmid-based recombination assay in which one copy of the CFP gene is inactivated by a site-specific psoralen ICL and can be repaired by gene conversion with a mutated homologous donor sequence. We found that the homology dependent recombination (HDR) is inhibited by the ICL. However, when we introduced a double strand break adjacent to the site of the ICL, the removal of the ICL was enhanced and the substrate was funneled into a HDR repair pathway. This process was not dependent on the nucleotide excision repair pathway, but did require the ERCC1-XPF endonuclease and REV3. In addition, both the Fanconi anemia pathway and the mismatch repair protein MSH2 were required for the recombinational repair processing of the ICL. These results suggest that the juxtaposition of an ICL and a DSB stimulates repair of ICLs through a process requiring components of mismatch repair, ERCC1-XPF, REV3, Fanconi anemia proteins, and homologous recombination repair factors.
机译:DNA链间交联剂已广泛用于癌症的化学治疗。哺乳动物细胞中的大多数链间交联(ICL)是通过复杂的过程除去的,该过程涉及在复制叉处形成双链断裂,切开ICL,并随后通过同源重组进行无错修复。双链断裂如何影响ICL的去除以及下游同源重组过程尚不清楚。在这里,我们描述了一种基于质粒的重组测定,其中CFP基因的一个拷贝被位点特异性补骨脂素ICL灭活,并且可以通过突变的同源供体序列的基因转化来修复。我们发现同源依赖性重组(HDR)被ICL抑制。但是,当我们在ICL的位置附近引入双链断裂时,ICL的去除增强,底物进入HDR修复途径。此过程不依赖于核苷酸切除修复途径,但确实需要ERCC1-XPF核酸内切酶和REV3。此外,Fanconi贫血途径和错配修复蛋白MSH2都是ICL重组修复过程所必需的。这些结果表明,通过要求错配修复,ERCC1-XPF,REV3,Fanconi贫血蛋白和同源重组修复因子组成的过程,将ICL和DSB并置可以刺激ICL的修复。

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