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Error-free bypass of 2-hydroxyadenine by human DNA polymerase λ with Proliferating Cell Nuclear Antigen and Replication Protein A in different sequence contexts

机译:人DNA聚合酶λ与人增殖细胞核抗原和复制蛋白A在不同序列背景下无错地绕过2-羟基腺嘌呤

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摘要

1,2-dihydro-2-oxoadenine (2-OH-A), a common DNA lesion produced by reactive oxygen species, is a strong replicative block for several DNA polymerases (DNA pols). We have previously shown that various bases can be misincorporated opposite the 2-OH-A lesion and the type of mispairs varies with either the sequence context or the type of DNA pol tested. Here, we have analysed the ability of the human pol family X member DNA pol λ, to bypass the 2-OH-A lesion. DNA pol λ can perform error-free bypass of 2-OH-A when this lesion is located in a random sequence, whereas in a repeated sequence context, even though bypass was also largely error-free, misincorporation of dGMP could be observed. The fidelity of translesion synthesis of 2-OH-A in a repeated sequence by DNA pol λ was enhanced by the auxiliary proteins Proliferating Cell Nuclear Antigen (PCNA) and Replication Protein A (RP-A). We also found that the DNA pol λ active site residue tyrosine 505 determined the nucleotide selectivity opposite 2-OH-A. Our data show, for the first time, that the 2-OH-A lesion can be efficiently and faithfully bypassed by a human DNA pol λ in combination with PCNA and RP-A.
机译:1,2-二氢-2-氧杂腺嘌呤(2-OH-A)是一种由活性氧产生的常见DNA损伤,是几种DNA聚合酶(DNA pols)的强复制块。先前我们已经表明,与2-OH-A病变相对的各种碱基都可能被错误整合,错误配对的类型随所测试序列的背景或DNA pol的类型而变化。在这里,我们分析了人类pol家族X成员DNA polλ绕过2-OH-A病变的能力。当该病灶位于随机序列中时,DNA polλ可以执行2-OH-A的无错旁路,而在重复序列的情况下,即使旁路也基本上无错,也可以观察到dGMP的错误掺入。 DNA polλ重复序列中2-OH-A的跨损伤合成的保真度由辅助蛋白增殖细胞核抗原(PCNA)和复制蛋白A(RP-A)增强。我们还发现,DNA polλ活性位点残基酪氨酸505决定了与2-OH-A相反的核苷酸选择性。我们的数据首次显示,结合PCNA和RP-A的人类DNA polλ可以有效忠实地绕过2-OH-A病变。

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