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人类氧化型DNA糖基化酶NEIL1在三链DNA结构中切除补骨脂素诱导的链间DNA交联。

The human oxidative DNA glycosylase NEIL1 excises psoralen-induced interstrand DNA cross-links in a three-stranded DNA structure.

作者信息

Couvé Sophie, Macé-Aimé Gaëtane, Rosselli Filippo, Saparbaev Murat K

机构信息

Groupe "Réparation de l'ADN," CNRS UMR 8126, F-94805 Villejuif Cedex, France.

出版信息

J Biol Chem. 2009 May 1;284(18):11963-70. doi: 10.1074/jbc.M900746200. Epub 2009 Mar 3.

Abstract

Previously, we have demonstrated that human oxidative DNA glycosylase NEIL1 excises photoactivated psoralen-induced monoadducts but not genuine interstrand cross-links (ICLs) in duplex DNA. It has been postulated that the repair of ICLs in mammalian cells is mainly linked to DNA replication and proceeds via dual incisions in one DNA strand that bracket the cross-linked site. This process, known as "unhooking," enables strand separation and translesion DNA synthesis through the gap, yielding a three-stranded DNA repair intermediate composed of a short unhooked oligomer covalently bound to the duplex. At present, the detailed molecular mechanism of ICL repair in mammalian cells remains unclear. Here, we constructed and characterized three-stranded DNA structures containing a single ICL as substrates for the base excision repair proteins. We show that NEIL1 excises with high efficiency the unhooked ICL fragment within a three-stranded DNA structure. Complete reconstitution of the repair of unhooked ICL shows that it can be processed in a short patch base excision repair pathway. The new substrate specificity of NEIL1 points to a preferential involvement in the replication-associated repair of ICLs. Based on these data, we propose a model for the mechanism of ICL repair in mammalian cells that implicates the DNA glycosylase activity of NEIL1 downstream of Xeroderma Pigmentosum group F/Excision Repair Cross-Complementing 1 endonuclease complex (XPF/ERCC1) and translesion DNA synthesis repair steps. Finally, our data demonstrate that Nei-like proteins from Escherichia coli to human cells can excise bulky unhooked psoralen-induced ICLs via hydrolysis of glycosidic bond between cross-linked base and deoxyribose sugar, thus providing an alternative heuristic solution for the removal of complex DNA lesions.

摘要

此前,我们已经证明,人类氧化型DNA糖基化酶NEIL1能够切除双链DNA中光活化补骨脂素诱导的单加合物,但不能切除真正的链间交联(ICL)。据推测,哺乳动物细胞中ICL的修复主要与DNA复制相关,并通过在一条DNA链上围绕交联位点进行双重切割来进行。这个过程被称为“解钩”,能够实现链分离并通过缺口进行跨损伤DNA合成,产生一个由短的解钩寡聚物与双链共价结合而成的三链DNA修复中间体。目前,哺乳动物细胞中ICL修复的详细分子机制仍不清楚。在这里,我们构建并表征了包含单个ICL的三链DNA结构,作为碱基切除修复蛋白的底物。我们发现NEIL1能够高效切除三链DNA结构中的解钩ICL片段。对解钩ICL修复的完全重构表明,它可以在短补丁碱基切除修复途径中进行处理。NEIL1的新底物特异性表明它优先参与ICL的复制相关修复。基于这些数据,我们提出了一个哺乳动物细胞中ICL修复机制的模型,该模型涉及在着色性干皮病F组/切除修复交叉互补1核酸内切酶复合物(XPF/ERCC1)和跨损伤DNA合成修复步骤下游的NEIL1的DNA糖基化酶活性。最后,我们的数据表明,从大肠杆菌到人类细胞的Nei样蛋白可以通过水解交联碱基与脱氧核糖之间的糖苷键来切除庞大的解钩补骨脂素诱导的ICL,从而为去除复杂的DNA损伤提供了一种替代的启发式解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/693a/2673265/fc9a80dff554/zbc0220974700001.jpg

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