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来自芽殖酵母酿酒酵母的DNA聚合酶ε全酶的保真度。

Fidelity of DNA polymerase epsilon holoenzyme from budding yeast Saccharomyces cerevisiae.

作者信息

Shimizu Kikuo, Hashimoto Keiji, Kirchner Jake M, Nakai Wataru, Nishikawa Hiroko, Resnick Michael A, Sugino Akio

机构信息

The Department of Biochemistry and Molecular Biology, Research Institute for Microbial Diseases, Osaka University, 3-1 Yamada-oka, Suita, Osaka 565-0871, Japan.

出版信息

J Biol Chem. 2002 Oct 4;277(40):37422-9. doi: 10.1074/jbc.M204476200. Epub 2002 Jul 17.

Abstract

DNA polymerases delta and epsilon (pol delta and epsilon) are the major replicative polymerases and possess 3'-5' proofreading exonuclease activities that correct errors arising during DNA replication in the yeast Saccharomyces cerevisiae. This study measures the fidelity of the holoenzyme of wild-type pol epsilon, the 3'-5' exonuclease-deficient pol2-4, a +1 frameshift mutator for homonucleotide runs, pol2C1089Y, and pol2C1089Y pol2-4 enzymes using a synthetic 30-mer primer/100-mer template. The nucleotide substitution rate for wild-type pol epsilon was 0.47 x 10(-5) for G:G mismatches, 0.15 x 10(-5) for T:G mismatches, and less than 0.01 x 10(-5) for A:G mismatches. The accuracy for A opposite G was not altered in the exonuclease-deficient pol2-4 pol epsilon; however, G:G and T:G misincorporation rates increased 40- and 73-fold, respectively. The pol2C1089Y pol epsilon mutant also exhibited increased G:G and T:G misincorporation rates, 22- and 10-fold, respectively, whereas A:G misincorporation did not differ from that of wild type. Since the fidelity of the double mutant pol2-4 pol2C1089Y was not greatly decreased, these results suggest that the proofreading 3'-5' exonuclease activity of pol2C1089Y pol epsilon is impaired even though it retains nuclease activity and the mutation is not in the known exonuclease domain.

摘要

DNA聚合酶δ和ε(Pol δ和Pol ε)是主要的复制性聚合酶,具有3'-5'校对核酸外切酶活性,可校正酿酒酵母DNA复制过程中出现的错误。本研究使用合成的30聚体引物/100聚体模板,测定了野生型Pol ε全酶、3'-5'核酸外切酶缺陷型Pol2-4、同核苷酸重复序列的+1移码突变体Pol2C1089Y以及Pol2C1089Y Pol2-4酶的保真度。野生型Pol ε的核苷酸错配率为:G:G错配为0.47×10⁻⁵,T:G错配为0.15×10⁻⁵,A:G错配小于0.01×10⁻⁵。在核酸外切酶缺陷型Pol2-4 Pol ε中,A与G配对的准确性未改变;然而,G:G和T:G的错误掺入率分别增加了40倍和73倍。Pol2C1089Y Pol ε突变体的G:G和T:G错误掺入率也分别增加了22倍和10倍,而A:G的错误掺入与野生型无差异。由于双突变体Pol2-4 Pol2C1089Y的保真度没有大幅下降,这些结果表明,Pol2C1089Y Pol ε的3'-5'校对核酸外切酶活性受损,尽管它保留了核酸酶活性,且突变不在已知的核酸外切酶结构域中。

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