AP核酸内切酶
AP站点
基底切除修复术
核酸内切酶
DNA修复
DNA
DNA-(无嘌呤或无嘧啶位点)裂解酶
生物
DNA糖基化酶
DNA损伤
化学
生物化学
细胞生物学
分子生物学
作者
Wenting Guo,Weijun Wu,Yan Wen,Yuan Gao,Shuting Zhuang,Chunyan Meng,Haitao Chen,Zhipeng Zhao,Kaishun Hu,Baixing Wu
标识
DOI:10.1016/j.str.2024.02.014
摘要
Summary
Base excision repair (BER) is a critical genome defense pathway that copes with a broad range of DNA lesions induced by endogenous or exogenous genotoxic agents. AP endonucleases in the BER pathway are responsible for removing the damaged bases and nicking the abasic sites. In plants, the BER pathway plays a critical role in the active demethylation of 5-methylcytosine (5mC) DNA modification. Here, we have determined the crystal structures of Arabidopsis AP endonuclease AtARP in complex with the double-stranded DNA containing tetrahydrofuran (THF) that mimics the abasic site. We identified the critical residues in AtARP for binding and removing the abasic site and the unique residues for interacting with the orphan base. Additionally, we investigated the differences among the three plant AP endonucleases and evaluated the general DNA repair capacity of AtARP in a mammalian cell line. Our studies provide further mechanistic insights into the BER pathway in plants.
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