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人类核苷酸切除修复中DNA损伤识别及链辨别机制

Mechanisms of DNA damage recognition and strand discrimination in human nucleotide excision repair.

作者信息

Dip Ramiro, Camenisch Ulrike, Naegeli Hanspeter

机构信息

Institute of Pharmacology and Toxicology, University of Zürich-Vetsuisse, Winterthurerstrasse 260, CH-8057 Zürich, Switzerland.

出版信息

DNA Repair (Amst). 2004 Nov 2;3(11):1409-23. doi: 10.1016/j.dnarep.2004.05.005.

Abstract

Using only a limited repertoire of recognition subunits, the nucleotide excision repair (NER) system is able to detect a nearly infinite variety of bulky DNA lesions. This extraordinary substrate versatility has generally been ascribed to an indirect readout mechanism, whereby particular distortions of the double helix, induced by a damaged nucleotide, provide the molecular determinants not only for lesion recognition but also for subsequent verification or demarcation processes. Here, we discuss the evidence in support of a bipartite mechanism of substrate discrimination that is initiated by the detection of thermodynamically unstable base pairs followed by direct localization of the lesion through an enzymatic proofreading activity. This bipartite discrimination mechanism is part of a dynamic reaction cycle that confers high levels of selectivity to avoid futile repair events on undamaged DNA and also protect the intact complementary strand from inappropriate cleavage.

摘要

利用仅有限的一组识别亚基,核苷酸切除修复(NER)系统能够检测几乎无限多种的大块DNA损伤。这种非凡的底物通用性通常归因于一种间接读出机制,即由受损核苷酸诱导的双螺旋的特定扭曲不仅为损伤识别提供分子决定因素,也为后续的验证或划定过程提供分子决定因素。在这里,我们讨论支持底物区分二分机制的证据,该机制由检测热力学不稳定碱基对启动,随后通过酶校对活性直接定位损伤。这种二分区分机制是动态反应循环的一部分,该循环赋予高水平的选择性,以避免对未受损DNA进行无效修复事件,并保护完整的互补链免受不适当的切割。

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