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酵母复制聚合酶将大量核苷酸掺入 DNA 中。

Abundant ribonucleotide incorporation into DNA by yeast replicative polymerases.

机构信息

Laboratory of Molecular Genetics and Laboratory of Structural Biology, Department of Health and Human Services, National Institute of Environmental Health Sciences, National Institutes of Health, Research Triangle Park, NC 27709, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Mar 16;107(11):4949-54. doi: 10.1073/pnas.0914857107. Epub 2010 Mar 1.

Abstract

Measurements of nucleoside triphosphate levels in Saccharomyces cerevisiae reveal that the four rNTPs are in 36- to 190-fold molar excess over their corresponding dNTPs. During DNA synthesis in vitro using the physiological nucleoside triphosphate concentrations, yeast DNA polymerase epsilon, which is implicated in leading strand replication, incorporates one rNMP for every 1,250 dNMPs. Pol delta and Pol alpha, which conduct lagging strand replication, incorporate one rNMP for every 5,000 or 625 dNMPs, respectively. Discrimination against rNMP incorporation varies widely, in some cases by more than 100-fold, depending on the identity of the base and the template sequence context in which it is located. Given estimates of the amount of replication catalyzed by Pols alpha, delta, and epsilon, the results are consistent with the possibility that more than 10,000 rNMPs may be incorporated into the nuclear genome during each round of replication in yeast. Thus, rNMPs may be the most common noncanonical nucleotides introduced into the eukaryotic genome. Potential beneficial and negative consequences of abundant ribonucleotide incorporation into DNA are discussed, including the possibility that unrepaired rNMPs in DNA could be problematic because yeast DNA polymerase epsilon has difficulty bypassing a single rNMP present within a DNA template.

摘要

测量酿酒酵母中的核苷三磷酸水平表明,四种 rNTP 与相应的 dNTP 相比,摩尔浓度高出 36 至 190 倍。在使用生理核苷三磷酸浓度进行体外 DNA 合成时,与前导链复制有关的酵母 DNA 聚合酶 epsilon,每掺入 1250 个 dNMP 就掺入一个 rNMP。进行滞后链复制的 Pol delta 和 Pol alpha 分别每掺入 5000 或 625 个 dNMP 就掺入一个 rNMP。rNMP 掺入的歧视性差异很大,在某些情况下差异超过 100 倍,这取决于碱基的身份和其所在的模板序列上下文。根据 Pols alpha、delta 和 epsilon 催化的复制量的估计,结果与以下可能性一致:在酵母的每一轮复制过程中,可能有超过 10000 个 rNMP 掺入到核基因组中。因此,rNMP 可能是引入真核基因组中最常见的非规范核苷酸。大量核糖核苷酸掺入 DNA 可能带来的有益和负面影响包括,未修复的 rNMP 可能在 DNA 中造成问题,因为酵母 DNA 聚合酶 epsilon 很难绕过 DNA 模板中存在的单个 rNMP。

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