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Mechanisms of Vertebrate DNA Interstrand Cross-Link Repair
Annual Review of Biochemistry ( IF 12.1 ) Pub Date : 2021-06-21 , DOI: 10.1146/annurev-biochem-080320-112510
Daniel R Semlow 1, 2 , Johannes C Walter 1, 3
Affiliation  

DNA interstrand cross-links (ICLs) covalently connect the two strands of the double helix and are extremely cytotoxic. Defective ICL repair causes the bone marrow failure and cancer predisposition syndrome, Fanconi anemia, and upregulation of repair causes chemotherapy resistance in cancer. The central event in ICL repair involves resolving the cross-link (unhooking). In this review, we discuss the chemical diversity of ICLs generated by exogenous and endogenous agents. We then describe how proliferating and nonproliferating vertebrate cells unhook ICLs. We emphasize fundamentally new unhooking strategies, dramatic progress in the structural analysis of the Fanconi anemia pathway, and insights into how cells govern the choice between different ICL repair pathways. Throughout, we highlight the many gaps that remain in our knowledge of these fascinating DNA repair pathways.

中文翻译:


脊椎动物 DNA 链间交联修复的机制

DNA 链间交联 (ICL) 共价连接双螺旋的两条链,具有极强的细胞毒性。有缺陷的 ICL 修复会导致骨髓衰竭和癌症易感性综合征、范可尼贫血,而修复的上调会导致癌症对化疗产生耐药性。ICL 修复中的核心事件涉及解决交叉链接(脱钩)。在这篇综述中,我们讨论了由外源性和内源性试剂产生的 ICL 的化学多样性。然后,我们描述了增殖和非增殖的脊椎动物细胞如何解开 ICL。我们强调全新的脱钩策略、范可尼贫血通路结构分析的巨大进展,以及对细胞如何控制不同 ICL 修复通路选择的见解。自始至终,

更新日期:2021-06-22
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