Buschta-Hedayat N, Buterin T, Hess M T, Missura M, Naegeli H
Institute of Pharmacology and Toxicology, University of Zürich-Tierspital, August Forel-Strasse 1, 8008 Zürich, Switzerland.
Proc Natl Acad Sci U S A. 1999 May 25;96(11):6090-5. doi: 10.1073/pnas.96.11.6090.
Nondistorting C4' backbone adducts serve as molecular tools to analyze the strategy by which a limited number of human nucleotide excision repair (NER) factors recognize an infinite variety of DNA lesions. We have constructed composite DNA substrates containing a noncomplementary site adjacent to a nondistorting C4' adduct to show that the loss of hydrogen bonding contacts between partner strands is an essential signal for the recruitment of NER enzymes. This specific conformational requirement for excision is mediated by the affinity of xeroderma pigmentosum group A (XPA) protein for nonhybridizing sites in duplex DNA. XPA recognizes defective Watson-Crick base pair conformations even in the absence of DNA adducts or other covalent modifications, apparently through detection of hydrophobic base components that are abnormally exposed to the double helical surface. This recognition function of XPA is enhanced by replication protein A (RPA) such that, in combination, XPA and RPA constitute a potent molecular sensor of denatured base pairs. Our results indicate that the XPA-RPA complex may promote damage recognition by monitoring Watson-Crick base pair integrity, thereby recruiting the human NER system preferentially to sites where hybridization between complementary strands is weakened or entirely disrupted.
无扭曲的C4'主链加合物可作为分子工具,用于分析有限数量的人类核苷酸切除修复(NER)因子识别无限多种DNA损伤的策略。我们构建了复合DNA底物,其包含与无扭曲的C4'加合物相邻的非互补位点,以表明互补链之间氢键接触的丧失是招募NER酶的关键信号。这种切除的特定构象要求是由A型着色性干皮病(XPA)蛋白对双链DNA中非杂交位点的亲和力介导的。即使在没有DNA加合物或其他共价修饰的情况下,XPA也能识别有缺陷的沃森-克里克碱基对构象,显然是通过检测异常暴露于双螺旋表面的疏水碱基成分来实现的。复制蛋白A(RPA)增强了XPA的这种识别功能,因此,XPA和RPA共同构成了一种强大的变性碱基对分子传感器。我们的结果表明,XPA-RPA复合物可能通过监测沃森-克里克碱基对的完整性来促进损伤识别,从而优先将人类NER系统招募到互补链之间杂交减弱或完全破坏的位点。