Department of Biological Sciences, University of Southern California, Los Angeles, California 90089, USA.
Biochemistry. 2010 Jan 12;49(1):20-8. doi: 10.1021/bi901653g.
DNA polymerase fidelity is defined as the ratio of right (R) to wrong (W) nucleotide incorporations when dRTP and dWTP substrates compete at equal concentrations for primer extension at the same site in the polymerase-primer-template DNA complex. Typically, R incorporation is favored over W by 10(3)-10(5)-fold, even in the absence of 3'-exonuclease proofreading. Straightforward in principle, a direct competition fidelity measurement is difficult to perform in practice because detection of a small amount of W is masked by a large amount of R. As an alternative, enzyme kinetics measurements to evaluate k(cat)/K(m) for R and W in separate reactions are widely used to measure polymerase fidelity indirectly, based on a steady state derivation by Fersht. A systematic comparison between direct competition and kinetics has not been made until now. By separating R and W products using electrophoresis, we have successfully taken accurate fidelity measurements for directly competing R and W dNTP substrates for 9 of the 12 natural base mispairs. We compare our direct competition results with steady state and pre-steady state kinetic measurements of fidelity at the same template site, using the proofreading-deficient mutant of Klenow fragment (KF(-)) DNA polymerase. All the data are in quantitative agreement.
DNA 聚合酶的保真度定义为 dRTP 和 dWTP 底物在同一聚合酶-引物-模板 DNA 复合物的相同位置竞争引物延伸时,正确(R)核苷酸掺入与错误(W)核苷酸掺入的比率。即使在没有 3'-外切酶校对的情况下,R 掺入通常也比 W 有利 10(3)-10(5)倍。原则上很简单,但直接竞争保真度测量在实践中很难进行,因为少量 W 的检测被大量 R 掩盖。作为替代方法,广泛使用酶动力学测量来评估单独反应中 R 和 W 的 k(cat)/K(m),以间接测量聚合酶保真度,这是基于 Fersht 的稳态推导。直到现在,还没有对直接竞争和动力学进行系统比较。通过电泳分离 R 和 W 产物,我们成功地对 9 种天然碱基错配中的直接竞争 R 和 W dNTP 底物进行了准确的保真度测量。我们将我们的直接竞争结果与使用缺乏校对的 Klenow 片段(KF(-))DNA 聚合酶在同一模板位点的稳态和预稳态动力学保真度测量进行了比较。所有数据都完全一致。