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使用噬菌体T4 DNA聚合酶在校读存在的情况下对DNA聚合酶保真度进行凝胶动力学分析。

Gel kinetic analysis of DNA polymerase fidelity in the presence of proofreading using bacteriophage T4 DNA polymerase.

作者信息

Creighton S, Goodman M F

机构信息

Department of Biological Sciences, University of Southern California, Los Angeles 90089-1340.

出版信息

J Biol Chem. 1995 Mar 3;270(9):4759-74. doi: 10.1074/jbc.270.9.4759.

Abstract

A gel fidelity assay, previously used in the analysis of DNA polymerases having no associated 3' to 5' exonuclease activity, has been generalized for use with polymerases that contain exonucleolytic proofreading. The main purpose of this study was the development of a general analysis, using a standard Markov model, to convert experimentally observed DNA primer gel bands arising from insertion and proofreading of right and wrong deoxyribonucleotides, into nucleotide incorporation velocities and, most importantly, fidelities. The model has been applied primarily to an analysis of polymerase kinetics and fidelity in the presence of a next correct rescue dNTP, but the model can be conveniently modified to investigate other experimental designs. In the presence of rescue dNTP, direct competition occurs between excision or extension of a mismatch. At concentrations of rescue dNTP sufficient to suppress the gel band intensity at the mismatch target site, nucleotide incorporation and misincorporation rates can be obtained from the ratios of gel band intensities 3' (downstream) and 5' (upstream) to the target site, measured as a function dNTP concentration for "wrong" and "right" dNTP substrates. The polymerase misincorporation efficiency, in the presence of proofreading, is given by the ratio of wrong to right incorporation efficiencies, Vmax/Km, obtained from the gel band ratios. The bacteriophage T4 polymerase with a highly active 3'-exonuclease activity was used to illustrate the assay. Nucleotide misincorporation efficiencies measured at several template sites were dCMP.A approximately equal to 10(-6), dGMP.A approximately equal to 10(-5), dTMP.T approximately equal to 2 x 10(-4), and dAMP.A < 10(-7). Proofreading of the dGMP.A mispair was suppressed by about 3-fold in the presence of high concentrations of next correct "rescue" dNTP causing a concomitant reduction in the fidelity of dGMP.A to about 3 x 10(-5).

摘要

一种凝胶保真度测定法,以前用于分析没有相关3'至5'核酸外切酶活性的DNA聚合酶,现已推广用于含有核酸外切校正功能的聚合酶。本研究的主要目的是开发一种通用分析方法,使用标准马尔可夫模型,将实验观察到的由正确和错误脱氧核糖核苷酸的插入和校正产生的DNA引物凝胶条带,转化为核苷酸掺入速度,最重要的是转化为保真度。该模型主要应用于分析在下一个正确的救援dNTP存在下的聚合酶动力学和保真度,但该模型可以方便地修改以研究其他实验设计。在存在救援dNTP的情况下,错配的切除或延伸之间会发生直接竞争。在足以抑制错配靶位点凝胶条带强度的救援dNTP浓度下,核苷酸掺入和错误掺入率可以从靶位点3'(下游)和5'(上游)凝胶条带强度的比率中获得,该比率是作为“错误”和“正确”dNTP底物的dNTP浓度的函数进行测量的。在存在校正的情况下,聚合酶错误掺入效率由从凝胶条带比率获得的错误与正确掺入效率之比Vmax/Km给出。具有高活性3'-核酸外切酶活性的噬菌体T4聚合酶用于说明该测定法。在几个模板位点测量的核苷酸错误掺入效率为dCMP.A约等于10(-6),dGMP.A约等于10(-5),dTMP.T约等于2×10(-4),dAMP.A<10(-7)。在高浓度的下一个正确的“救援”dNTP存在下,dGMP.A错配的校正被抑制约3倍,导致dGMP.A的保真度相应降低至约3×10(-5)。

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