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XPF-ERCC1 acts in Unhooking DNA interstrand crosslinks in cooperation with FANCD2 and FANCP/SLX4

机译:XPF-ERCC1与FANCD2和FANCP / SLX4共同作用于脱钩DNA链间交联

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摘要

DNA interstrand crosslinks (ICLs), highly toxic lesions that covalently link the Watson and Crick strands of the double helix, are repaired by a complex, replication-coupled pathway in higher eukaryotes. The earliest DNA processing event in ICL repair is the incision of parental DNA on either side of the ICL ("unhooking"), which allows lesion bypass. Incisions depend critically on the Fanconi anemia pathway, whose activation involves ubiquitylation of the FANCD2 protein. Using Xenopus egg extracts, which support replication-coupled ICL repair, we show that the 3' flap endonuclease XPF-ERCC1 cooperates with SLX4/FANCP to carry out the unhooking incisions. Efficient recruitment of XPF-ERCC1 and SLX4 to the ICL depends on FANCD2 and its ubiquitylation. These data help define the molecular mechanism by which the Fanconi anemia pathway promotes a key event in replication-coupled ICL repair.
机译:DNA链间交联(ICL)是共价连接双螺旋的Watson和Crick链的高毒性损伤,可通过复杂的复制耦合途径在高等真核生物中修复。 ICL修复中最早的DNA处理事件是在ICL的任一侧切割亲本DNA(“脱钩”),这允许病变绕开。切口严重依赖于Fanconi贫血途径,其激活涉及FANCD2蛋白的泛素化。使用支持复制耦合ICL修复的非洲爪蟾卵提取物,我们显示3'皮瓣内切核酸酶XPF-ERCC1与SLX4 / FANCP协同进行脱钩切口。 XPF-ERCC1和SLX4是否有效募集到ICL取决于FANCD2及其泛素化。这些数据有助于确定Fanconi贫血途径促进复制偶联ICL修复中关键事件的分子机制。

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