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Futile short-patch DNA base excision repair of adenine:8-oxoguanine mispair

机译:腺嘌呤:8-氧鸟嘌呤错配的无用的短补丁DNA碱基切除修复

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摘要

8-Oxo-7, 8-dihydrodeoxyguanosine (8-oxo-dG), one of the representative oxidative DNA lesions, frequently mispairs with the incoming dAMP during mammalian DNA replication. Mispaired dA is removed by post-replicative base excision repair (BER) initiated by adenine DNA glycosylase, MYH, creating an apurinic (AP) site. The subsequent mechanism ensuring a dC:8-oxo-dG pair, a substrate for 8-oxoguanine DNA glycosylase (OGG1), remains to be elucidated. At the nucleotide insertion step, none of the mammalian DNA polymerases examined exclusively inserted dC opposite 8-oxo-dG that was located in a gap. AP endonuclease 1, which possesses 3′→5′ exonuclease activity and potentially serves as a proofreader, did not discriminate dA from dC that was located opposite 8-oxo-dG. However, human DNA ligases I and III joined 3′-dA terminus much more efficiently than 3′-dC terminus when paired to 8-oxo-dG. In reconstituted short-patch BER, repair products contained only dA opposite 8-oxo-dG. These results indicate that human DNA ligases discriminate dC from dA and that MYH-initiated short-patch BER is futile and hence this BER must proceed to long-patch repair, even if it is initiated as short-patch repair, through strand displacement synthesis from the ligation-resistant dC terminus to generate the OGG1 substrate, dC:8-oxo-dG pair.
机译:代表性的氧化性DNA损伤之一8-Oxo-7、8-二氢脱氧鸟苷(8-oxo-dG)在哺乳动物DNA复制过程中经常与传入的dAMP错配。通过腺嘌呤DNA糖基化酶MYH启动的复制后碱基切除修复(BER),可以去除错配的dA,从而形成一个嘌呤(AP)位点。确保dC:8-oxo-dG对(8-oxoguanine DNA糖基化酶(OGG1)的底物)的后续机制仍有待阐明。在核苷酸插入步骤中,没有一个哺乳动物的DNA聚合酶检查过专门插入位于间隙中的与8-oxo-dG相对的dC。具有3'→5'核酸外切酶活性并可能用作校对的AP核酸内切酶1不能将dA与位于8-oxo-dG对面的dC区分开。然而,当与8-氧代-dG配对时,人DNA连接酶I和III比3'-dC末端更有效地连接3'-dA末端。在重构的短补丁BER中,修复产品仅包含与8-oxo-dG相对的dA。这些结果表明,人类DNA连接酶将dC与dA区分开,并且MYH引发的短补丁BER是徒劳的,因此,即使通过短链修复将其作为短补丁修复而启动,该BER也必须继续进行长补丁修复,方法是通过耐连接的dC末端生成OGG1底物dC:8-oxo-dG对。

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