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Replication-Dependent Unhooking of DNA Interstrand Cross-Links by the NEIL3 Glycosylase

机译:NEIL3糖基化酶的复制依赖脱钩的DNA链交叉链接。

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摘要

During eukaryotic DNA interstrand cross-link (ICL) repair, cross-links are resolved ("unhooked'') by nucleolytic incisions surrounding the lesion. In vertebrates, ICL repair is triggered when replication forks collide with the lesion, leading to FANCI-FANCD2-dependent unhooking and formation of a double-strand break (DSB) intermediate. Using Xenopus egg extracts, we describe here a replication-coupled ICL repair pathway that does not require incisions or FANCI-FANCD2. Instead, the ICL is unhooked when one of the two N-glycosyl bonds forming the cross-link is cleaved by the DNA glycosylase NEIL3. Cleavage by NEIL3 is the primary unhooking mechanism for psoralen and abasic site ICLs. When N-glycosyl bond cleavage is prevented, unhooking occurs via FANCI-FANCD2-dependent incisions. In summary, we identify an incision-independent unhooking mechanism that avoids DSB formation and represents the preferred pathway of ICL repair in a vertebrate cell-free system.
机译:在真核DNA链间交联(ICL)修复过程中,交联通过病变周围的溶核切口得以解决(“脱钩”)。在脊椎动物中,当复制叉与病变相撞时会触发ICL修复,从而导致FANCI-FANCD2依赖的脱钩和双链断裂(DSB)中间体的形成。我们使用非洲爪蟾卵提取物在此处描述了一种复制偶联的ICL修复途径,该途径不需要切口或FANCI-FANCD2。 DNA糖基化酶NEIL3切割形成交联的两个N-糖基键,NEIL3的切割是补骨脂素和无碱基位点ICL的主要脱钩机制,当阻止N-糖基键裂解时,通过FANCI-FANCD2-发生脱钩总而言之,我们确定了一种与切口无关的脱钩机制,该机制可避免DSB形成,并代表无脊椎动物系统中ICL修复的优选途径。

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