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碱基选择步骤在人类 DNA 聚合酶 α 中的功能。

Functions of base selection step in human DNA polymerase alpha.

机构信息

Division of Molecular Carcinogenesis, Center for Neurological Diseases and Cancer, Nagoya University Graduate School of Medicine, Nagoya 466-8550, Japan.

出版信息

DNA Repair (Amst). 2010 May 4;9(5):534-41. doi: 10.1016/j.dnarep.2010.02.002. Epub 2010 Mar 3.

Abstract

Recent studies have revealed that the base selection step of DNA polymerases (pol) plays a role in prevention of DNA replication errors. We investigated whether base selection is required for the DNA replication fidelity of pol alpha and genomic stability in human cells. We introduced an Leu864 to Phe substitution (L864F) into human pol alpha and performed an in vitro LacZ alpha forward mutation assay. Our results showed that the overall mutation rate was increased by 180-fold as compared to that of the wild-type. Furthermore, steady state kinetics analyses consistently showed that L864F pol alpha had a decreased discrimination ability between correct and incorrect nucleotide incorporation, as well as between matched and mismatched primer termini. L864F pol alpha also exhibited increased translesion activity over the abasic, etheno-A, O(4)-methyl-T, and O(6)-methyl-G sites. In addition, our steady state kinetics analyses supported the finding of increased translesion activity of L864F pol alpha over O(6)-methyl-G. We also established stable clones transfected with pola1L864F utilizing the human cancer cell line HCT116. Using the HPRT gene as a reporter, the spontaneous mutation rate of pola1L864F cells was determined to be 2.4-fold greater than that of wild-type cells. Mutation assays were also carried out using cells transiently transfected with the wild-type or pola1L864F, and increased mutant frequencies were observed in pola1L864F cells under both spontaneous and methyl methanesulfonate-induced conditions. Together, our results indicate that the base selection step in human pol alpha functions to prevent DNA replication errors and maintain genomic integrity in HCT116 cells.

摘要

最近的研究表明,DNA 聚合酶(pol)的碱基选择步骤在预防 DNA 复制错误方面发挥作用。我们研究了碱基选择是否是 pol α 的 DNA 复制保真度和人类细胞中基因组稳定性所必需的。我们将人类 pol α 的 Leu864 突变为 Phe(L864F),并进行了体外 LacZα 正向突变测定。结果表明,与野生型相比,总体突变率增加了 180 倍。此外,稳态动力学分析一致表明,L864F pol α 在正确和错误核苷酸掺入之间以及匹配和不匹配引物末端之间的区分能力降低。L864F pol α 在碱基缺失、乙基亚、O(4)-甲基-T 和 O(6)-甲基-G 位点的跨损伤活性也增加。此外,我们的稳态动力学分析支持 L864F pol α 在 O(6)-甲基-G 上的跨损伤活性增加的发现。我们还利用人结肠癌细胞系 HCT116 建立了转染 pola1L864F 的稳定克隆。利用 HPRT 基因作为报告基因,测定 pola1L864F 细胞的自发突变率比野生型细胞高 2.4 倍。还进行了使用野生型或 pola1L864F 瞬时转染的细胞的突变测定,在自发和甲基甲磺酸诱导条件下,pola1L864F 细胞的突变频率均增加。总之,我们的结果表明,人 pol α 的碱基选择步骤可防止 DNA 复制错误并维持 HCT116 细胞中的基因组完整性。

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