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DNA修复的化学与生物学

Chemistry and biology of DNA repair.

作者信息

Schärer Orlando D

机构信息

Institute of Molecular Cancer Research, University of Zürich, August Forel Strasse 7, 8008 Zürich, Switzerland.

出版信息

Angew Chem Int Ed Engl. 2003 Jul 7;42(26):2946-74. doi: 10.1002/anie.200200523.

Abstract

Numerous agents of endogenous and exogenous origin damage DNA in our genome. There are several DNA-repair pathways that recognize lesions in DNA and remove them through a number of diverse reaction sequences. Defects in DNA-repair proteins are associated with several human hereditary syndromes, which show a marked predisposition to cancer. Although DNA repair is essential for a healthy cell, DNA-repair enzymes counteract the efficiency of a number of important antitumor agents that exert their cytotoxic effects by damaging DNA. DNA-repair enzymes are therefore also targets for drug design. DNA-repair processes differ greatly in their nature and complexity. Whereas some pathways only require a single enzyme to restore the original DNA sequence, others operate through the coordinated action of 30 or more proteins. Our understanding of the genetic, biochemical, and structural basis of DNA repair and related processes has increased dramatically over the past decade. This review summarizes the latest developments in this field.

摘要

内源性和外源性的多种因素会损害我们基因组中的DNA。有几种DNA修复途径可以识别DNA中的损伤,并通过多种不同的反应序列将其去除。DNA修复蛋白的缺陷与几种人类遗传性综合征有关,这些综合征显示出明显的癌症易感性。尽管DNA修复对健康细胞至关重要,但DNA修复酶会抵消许多重要抗肿瘤药物的作用效率,这些药物通过损伤DNA发挥细胞毒性作用。因此,DNA修复酶也是药物设计的靶点。DNA修复过程在性质和复杂性上有很大差异。有些途径只需要一种酶就能恢复原始DNA序列,而其他途径则通过30种或更多蛋白质的协同作用来运作。在过去十年中,我们对DNA修复及相关过程的遗传、生化和结构基础的理解有了显著提高。本综述总结了该领域的最新进展。

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