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首页> 外文期刊>Nucleic Acids Research >Ribonucleotide incorporation by human DNA polymerase eta impacts translesion synthesis and RNase H2 activity
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Ribonucleotide incorporation by human DNA polymerase eta impacts translesion synthesis and RNase H2 activity

机译:通过人DNA聚合酶ETA的核糖核苷酸掺入撞击转源合成和RNase H2活性

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摘要

Ribonucleotides (rNs) incorporated in the genome by DNA polymerases (Pols) are removed by RNase H2. Cytidine and guanosine preferentially accumulate over the other rNs. Here we show that human Pol eta can incorporate cytidine monophosphate (rCMP) opposite guanine, 8-oxo-7,8-dihydroguanine, 8-methyl-2'- deoxyguanosine and a cisplatin intrastrand guanine crosslink (cis-PtGG), while it cannot bypass a 3-methylcytidine or an abasic site with rNs as substrates. Pol eta is also capable of synthesizing polyribonucleotide chains, and its activity is enhanced by its auxiliary factor DNA Pol delta interacting protein 2 (PolDIP2). Human RNase H2 removes cytidine and guanosine less efficiently than the other rNs and incorporation of rCMP opposite DNA lesions further reduces the efficiency of RNase H2. Experiments with XP-V cell extracts indicate Pol eta as the major basis of rCMP incorporation opposite cis-PtGG. These results suggest that translesion synthesis by Pol eta can contribute to the accumulation of rCMP in the genome, particularly opposite modified guanines.
机译:通过DNA聚合酶(POL)结合在基因组中的核糖核苷酸(RNS)通过RNase H 2除去。胞苷和鸟苷优先积聚在其他RN上。在这里,我们表明人Poleta可以将胞嘧啶单磷酸盐(RCMP)掺入鸟嘌呤,8- oxo-7,8-二氢胍,8-甲基-2'-脱氧核苷酸和顺铂卵链内交联(CIS-PTGG),同时不能用RN旁化3-甲基胞嘧啶或脱脂部位作为基质。 POL ETA还能够合成多核糖核苷酸链,其活性通过其辅助因子DNA POL DELTA相互作用蛋白2(Poldip2)增强。人RNase H2除去胞苷和鸟苷,比其他RNS更低,并掺入相对于DNA病变的RCMP进一步降低了RNase H2的效率。 XP-V细胞提取物的实验表明POL ETA作为RCMP掺入的主要基础,对面的CIS-PTGG。这些结果表明,POL ETA的翻塑合成可以有助于基因组中RCMP的积累,特别是对不同的改性鸟嘌呤。

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