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哺乳动物核苷酸切除修复中DNA损伤的两步识别:XPC复合物的定向结合与DNA链扫描

Two-step recognition of DNA damage for mammalian nucleotide excision repair: Directional binding of the XPC complex and DNA strand scanning.

作者信息

Sugasawa Kaoru, Akagi Jun-ichi, Nishi Ryotaro, Iwai Shigenori, Hanaoka Fumio

机构信息

Biosignal Research Center, Kobe University, Rokkodai, Nada-ku, Hyogo, Japan.

出版信息

Mol Cell. 2009 Nov 25;36(4):642-53. doi: 10.1016/j.molcel.2009.09.035.

Abstract

For mammalian nucleotide excision repair (NER), DNA lesions are recognized in at least two steps involving detection of unpaired bases by the XPC protein complex and the subsequent verification of injured bases. Although lesion verification is important to ensure high damage discrimination and the accuracy of the repair system, it has been unclear how this is accomplished. Here, we show that damage verification involves scanning of a DNA strand from the site where XPC is initially bound. Translocation by the NER machinery exhibits a 5'-to-3' directionality, strongly suggesting involvement of the XPD helicase, a component of TFIIH. Furthermore, the initial orientation of XPC binding is crucial in that only one DNA strand is selected to search for the presence of lesions. Our results dissect the intricate molecular mechanism of NER and provide insights into a strategy for mammalian cells to survey large genomes to detect DNA damage.

摘要

对于哺乳动物的核苷酸切除修复(NER),DNA损伤至少通过两个步骤来识别,包括XPC蛋白复合物检测未配对碱基以及随后对受损碱基的验证。尽管损伤验证对于确保高损伤辨别能力和修复系统的准确性很重要,但一直不清楚这是如何实现的。在这里,我们表明损伤验证涉及从XPC最初结合的位点开始扫描DNA链。NER机制的易位呈现5'到3'的方向性,强烈表明XPD解旋酶(TFIIH的一个组成部分)参与其中。此外,XPC结合的初始方向至关重要,因为只选择一条DNA链来搜索损伤的存在。我们的结果剖析了NER复杂的分子机制,并为哺乳动物细胞检测大基因组中的DNA损伤提供了一种策略的见解。

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