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关于DNA复制的保真度。聚合过程中核苷单磷酸的生成。

On the fidelity of DNA replication. Nucleoside monophosphate generation during polymerization.

作者信息

Loeb L A, Dube D K, Beckman R A, Koplitz M, Gopinathan K P

出版信息

J Biol Chem. 1981 Apr 25;256(8):3978-87.

PMID:7012147
Abstract

During catalysis by homogeneous procaryotic DNA polymerases, nucleoside monophosphates are generated by a 3' leads to 5'-exonucleolytic activity. Using Escherichia coli DNA polymerase I and poly[d(A-T)] as a template, the contribution of this activity to the fidelity of DNA synthesis has been evaluated by three different criteria. 1) The ratio between the rates of monophosphate generation and incorporation of the noncomplementary nucleotide with Mg2+ as an activating cation was 0.6 +/- 0.6, which is insufficient to account for the high fidelity of polymerization. 2) Inhibition of polymerization by pyrophosphate fails to diminish fidelity, although some kinetic models suggest that optimal error correction via monophosphate release requires the polymerization reaction to be strongly driven by pyrophosphate release. 3) The addition of deoxynucleoside monophosphates in concentrations as great as 10 mM to the reaction mixture does not alter the fidelity of DNA synthesis. These observations argue against the kinetic proofreading mode to account for the fidelity of E. coli DNA polymerase I when copying poly[d(A-T)] in a Mg2+-activated reaction. Furthermore, they suggest that the polymerase may enhance specificity at the base-selection step. However, the 3' leads to 5' exonuclease plays a larger role when the polymerase is activated with Mn2+ and may also be important in copying natural DNA where lower error rates are observed in vitro.

摘要

在原核生物同源DNA聚合酶催化过程中,核苷单磷酸通过3'至5'外切核酸酶活性生成。以大肠杆菌DNA聚合酶I和聚[d(A-T)]为模板,已通过三种不同标准评估了该活性对DNA合成保真度的贡献。1)以Mg2+作为激活阳离子时,单磷酸生成速率与非互补核苷酸掺入速率之比为0.6±0.6,这不足以解释聚合反应的高保真度。2)焦磷酸对聚合反应的抑制并未降低保真度,尽管一些动力学模型表明,通过单磷酸释放进行最佳错误校正需要聚合反应由焦磷酸释放强烈驱动。3)向反应混合物中添加浓度高达10 mM的脱氧核苷单磷酸不会改变DNA合成的保真度。这些观察结果反对在Mg2+激活的反应中复制聚[d(A-T)]时,动力学校对模式可解释大肠杆菌DNA聚合酶I的保真度。此外,它们表明聚合酶可能在碱基选择步骤增强特异性。然而,当聚合酶用Mn2+激活时,3'至5'外切核酸酶发挥更大作用,并且在复制天然DNA时也可能很重要,在体外观察到较低的错误率。

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