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DNA聚合酶β:催化机制中的多种构象变化

DNA polymerase beta: multiple conformational changes in the mechanism of catalysis.

作者信息

Zhong X, Patel S S, Werneburg B G, Tsai M D

机构信息

Department of Chemistry, The Ohio State University, Columbus, Ohio 43210, USA.

出版信息

Biochemistry. 1997 Sep 30;36(39):11891-900. doi: 10.1021/bi963181j.

Abstract

Stopped-flow fluorescence assay was applied to identify conformational changes in the catalytic cycle of DNA polymerase beta (Pol beta), using a synthetic DNA primer/template containing 2-aminopurine (2-AP) at the template position opposite the incoming dNTP. Two phases of fluorescence change were observed in the stopped-flow fluorescence assay of the incorporation of the correct nucleotide dTTP. The rate of the slow phase corresponds to that of product formation. This slow phase was identified as the result of a rate-limiting conformational change step before chemistry because this slow phase was also observed with a dideoxynucleotide at the 3' end of the primer which prevents chemical bond formation. The fast phase was also attributed to a conformational change step since its dependence on [dTTP] is hyperbolic. The rates of the two phases and their dependence on [dTTP] and [Mg2+] suggest that the fast conformational change is induced by the binding of MgdNTP and the slow conformational change is induced by the binding of the catalytic Mg2+ ion. The same biphasic kinetics with different rates were also observed with the thio analog dTTPalphaS and incorrect nucleotides dATP, dGTP, and dCTP. The structural nature for the two conformational changes has been discussed in relation to the available structural information of this enzyme. The results could help to explain how a polymerase controls and achieves its fidelity with a multiple conformational change mechanism.

摘要

采用停流荧光分析法,利用在与进入的脱氧核苷三磷酸(dNTP)相对的模板位置含有2-氨基嘌呤(2-AP)的合成DNA引物/模板,来鉴定DNA聚合酶β(Polβ)催化循环中的构象变化。在掺入正确核苷酸dTTP的停流荧光分析中观察到荧光变化的两个阶段。慢相的速率与产物形成的速率相对应。这个慢相被确定为化学作用之前限速构象变化步骤的结果,因为在引物3'端带有双脱氧核苷酸(其可阻止化学键形成)的情况下也观察到了这个慢相。快相也归因于构象变化步骤,因为其对[dTTP]的依赖性呈双曲线关系。两个阶段的速率及其对[dTTP]和[Mg2+]的依赖性表明,快速构象变化是由MgdNTP的结合诱导的,而慢速构象变化是由催化性Mg2+离子的结合诱导的。用硫代类似物dTTPαS以及不正确的核苷酸dATP、dGTP和dCTP也观察到了具有不同速率的相同双相动力学。已结合该酶现有的结构信息讨论了这两种构象变化的结构性质。这些结果有助于解释聚合酶如何通过多重构象变化机制来控制并实现其保真度。

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