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体外5-甲酰基尿嘧啶的核苷酸切除修复因错配碱基的存在而增强。

Nucleotide excision repair of 5-formyluracil in vitro is enhanced by the presence of mismatched bases.

作者信息

Kino Katsuhito, Shimizu Yuichiro, Sugasawa Kaoru, Sugiyama Hiroshi, Hanaoka Fumio

机构信息

Cellular Physiology Laboratory, RIKEN, Japan Science and Technology Corporation, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.

出版信息

Biochemistry. 2004 Mar 16;43(10):2682-7. doi: 10.1021/bi0361416.

Abstract

5-Formyluracil (fU) is a major thymine lesion produced by reactive oxygen radicals and photosensitized oxidation. Although this residue is a potentially mutagenic lesion and is removed by several base excision repair enzymes, it is unknown whether fU is the substrate of nucleotide excision repair (NER). Here, we analyzed the binding specificity of XPC-HR23B, which initiates NER, and cell-free NER activity on fU opposite four different bases. The result of the gel mobility shift assay showed that XPC-HR23B binds the fU-containing substrates in the following order: fU:C >> fU:T > fU:G > fU:A. Furthermore, in the presence of XPC-HR23B, the dual incision activity was the same as the order of the binding affinity of XPC-HR23B to fU. Therefore, it is concluded that even fU, regarded as a shape mimic of thymine, can be recognized as a substrate of NER incision, and the efficiency depends on instability of the base pair.

摘要

5-甲酰基尿嘧啶(fU)是由活性氧自由基和光敏氧化产生的主要胸腺嘧啶损伤产物。尽管该残基是一种潜在的诱变损伤,且可被多种碱基切除修复酶清除,但fU是否为核苷酸切除修复(NER)的底物尚不清楚。在此,我们分析了启动NER的XPC-HR23B的结合特异性以及无细胞体系中NER对与四种不同碱基配对的fU的活性。凝胶迁移率变动分析结果表明,XPC-HR23B与含fU的底物的结合顺序为:fU:C >> fU:T > fU:G > fU:A。此外,在XPC-HR23B存在的情况下,双链切口活性与XPC-HR23B对fU的结合亲和力顺序相同。因此,可以得出结论,即使被视为胸腺嘧啶形状模拟物的fU也可被识别为NER切口的底物,且效率取决于碱基对的不稳定性。

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