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人类DNA修复切除核酸酶的组装顺序

Order of assembly of human DNA repair excision nuclease.

作者信息

Wakasugi M, Sancar A

机构信息

Department of Biochemistry and Biophysics, University of North Carolina School of Medicine, Chapel Hill, North Carolina 27599-7260, USA.

出版信息

J Biol Chem. 1999 Jun 25;274(26):18759-68. doi: 10.1074/jbc.274.26.18759.

Abstract

Human excision nuclease removes DNA damage by concerted dual incisions bracketing the lesion. The dual incisions are accomplished by sequential and partly overlapping actions of six repair factors, RPA, XPA, XPC, TFIIH, XPG, and XPF.ERCC1. Of these, RPA, XPA, and XPC have specific binding affinity for damaged DNA. To learn about the role of these three proteins in damage recognition and the order of assembly of the excision nuclease, we measured the binding affinities of XPA, RPA, and XPC to a DNA fragment containing a single (6-4) photoproduct and determined the rate of damage excision under a variety of reaction conditions. We found that XPC has the highest affinity to DNA and that RPA has the highest selectivity for damaged DNA. Under experimental conditions conducive to binding of either XPA + RPA or XPC to damaged DNA, the rate of damage removal was about 5-fold faster for reactions in which XPA + RPA was the first damage recognition factor presented to DNA compared with reactions in which XPC was the first protein that had the opportunity to bind to DNA. We conclude that RPA and XPA are the initial damage sensing factors of human excision nuclease.

摘要

人类切除核酸酶通过在损伤部位两侧进行协同双切口来去除DNA损伤。双切口是由六个修复因子RPA、XPA、XPC、TFIIH、XPG和XPF.ERCC1依次且部分重叠的作用完成的。其中,RPA、XPA和XPC对受损DNA具有特异性结合亲和力。为了了解这三种蛋白质在损伤识别中的作用以及切除核酸酶的组装顺序,我们测量了XPA、RPA和XPC对含有单个(6-4)光产物的DNA片段的结合亲和力,并在各种反应条件下测定了损伤切除率。我们发现XPC对DNA的亲和力最高,而RPA对受损DNA的选择性最高。在有利于XPA + RPA或XPC与受损DNA结合的实验条件下,与XPC是第一个有机会与DNA结合的蛋白质的反应相比,XPA + RPA作为第一个与DNA呈现的损伤识别因子的反应中,损伤去除率快约5倍。我们得出结论,RPA和XPA是人类切除核酸酶的初始损伤传感因子。

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