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Fidelity of replication of the leading and the lagging DNA strands opposite N-methyl-N-nitrosourea-induced DNA damage in human cells.

机译:与人类细胞中N-甲基-N-亚硝基脲诱导的DNA损伤相反的前导DNA链和落后DNA链的复制保真度。

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摘要

Semi-conservative replication of double-stranded DNA in eukaryotic cells is an asymmetric process involving leading and lagging strand synthesis and different DNA polymerases. We report a study to analyze the effect of these asymmetries when the replication machinery encounters alkylation-induced DNA adducts. The model system is an EBV-derived shuttle vector which replicates in synchrony with the host human cells and carries as marker gene the bacterial gpt gene. A preferential distribution of N-methyl-N-nitrosourea (MNU)-induced mutations in the non transcribed DNA strand of the shuttle vector pF1-EBV was previously reported. The hypermutated strand was the leading strand. To test whether the different fidelity of DNA polymerases synthesizing the leading and the lagging strands might contribute to MNU-induced mutation distribution the mutagenesis study was repeated on the shuttle vector pTF-EBV which contains the gpt gene in the inverted orientation. We show that the base substitution error rates on an alkylated substrate are similar for the replication of the leading and lagging strands. Moreover, we present evidence that the fidelity of replication opposite O6-methylguanine adducts of both the leading and lagging strands is not affected by the 3' flanking base. The preferential targeting of mutations after replication of alkylated DNA is mainly driven by the base at the 5' side of the G residues.
机译:双链DNA在真核细胞中的半保守复制是一个不对称过程,涉及前导和滞后链合成以及不同的DNA聚合酶。我们报告了一项研究,以分析复制机制遇到烷基化诱导的DNA加合物时这些不对称的影响。该模型系统是源自EBV的穿梭载体,该载体与宿主人类细胞同步复制并携带细菌gpt基因作为标记基因。先前报道了在穿梭载体pF1-EBV的非转录DNA链中N-甲基-N-亚硝基脲(MNU)诱导的突变的优先分布。超突变链是前导链。为了测试合成前导链和滞后链的DNA聚合酶的不同保真度是否可能导致MNU诱导的突变分布,对穿梭载体pTF-EBV进行了诱变研究,该载体包含反向取向的gpt基因。我们表明,烷基化底物上的碱基取代错误率与前导链和滞后链的复制相似。此外,我们目前的证据表明,前导链和滞后链的O6-甲基鸟嘌呤加合物的复制保真度不受3'侧翼碱基的影响。烷基化DNA复制后,突变的优先靶向主要受G残基5'侧的碱基驱动。

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