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Repair efficiency of (5'S)-8,5'-cyclo-2'-deoxyguanosine and (5'S)-8,5'-cyclo-2'-deoxyadenosine depends on the complementary base

机译:(5'S)-8,5'-cyclo-2'-脱氧鸟苷和(5'S)-8,5'-cyclo-2'-脱氧腺苷的修复效率取决于互补碱基

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摘要

5'-R and 5'-S diastereoisomers of 8,5'-cyclo-2'-deoxyadenosine (cdA) and 8,5'-cyclo-2'-deoxyguanosine (cdG) containing a base-sugar covalent bond are formed by hydroxyl radicals. R-cdA and S-cdA are repaired by nucleotide excision repair (NER) in mammalian cellular extracts. Here, we have examined seven purified base excision repair enzymes for their ability to repair S-cdG or S-cdA. We could not detect either excision or binding of these enzymes on duplex oligonucleotide substrates containing these lesions. However, both lesions were repaired by HeLa cell extracts. Dual incisions by human NER on a 136-mer duplex generated 24-32bp fragments. The time course of dual incisions were measured in comparison to cis-anti-B[a]P-N 2-dG, an excellent substrate for human NER, which showed that cis-anti-B[a]P-N 2-dG was repaired more efficiently than S-cdG, which, in turn, was repaired more efficiently than S-cdA. When NER efficiency of S-cdG with different complementary bases was investigated, the wobble pair S-cdG·dT was excised more efficiently than the S-cdG·dC pair that maintains nearly normal Watson-Crick base pairing. But S-cdG·dA mispair with no hydrogen bonds was excised less efficiently than the S-cdG·dC pair. Similar pattern was noted for S-cdA. The S-cdA·dC mispair was excised much more efficiently than the S-cdA·dT pair, whereas the S-cdA·dA pair was excised less efficiently. This result adds to complexity of human NER, which discriminates the damaged base pairs on the basis of multiple criteria.
机译:含有碱基-糖共价键的8,5'-环-2'-脱氧腺苷(cdA)和8,5'-环-2'-脱氧鸟苷(cdG)的5'-R和5'-S非对映异构体是通过形成羟基自由基。 R-cdA和S-cdA通过核苷酸切除修复(NER)在哺乳动物细胞提取物中修复。在这里,我们检查了七个纯化的碱基切除修复酶修复S-cdG或S-cdA的能力。我们无法检测到这些酶在含有这些病变的双链寡核苷酸底物上的切除或结合。但是,这两种病变均被HeLa细胞提取物修复。人类NER在136-mer双链体上的双切口产生了24-32bp的片段。与顺式-抗-B [a] PN 2-dG(人NER的极好底物)相比,测量了双切口的时程,这表明顺式-抗-B [a] PN 2-dG的修复效率更高。比S-cdG修复的效率更高。当研究具有不同互补碱基的S-cdG的NER效率时,摆动对S-cdG·dT的切除效率要比保持接近正常Watson-Crick碱基对的S-cdG·dC对有效。但是,没有氢键的S-cdG·dA错配的去除效率低于S-cdG·dC对。对于S-cdA,注意到类似的模式。与S-cdA·dT对配对相比,S-cdA·dC配对错误的切除效率更高,而S-cdA·dA对配对的切除效率更低。该结果增加了人类NER的复杂性,其基于多个标准来区分受损的碱基对。

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