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通过多底物动力学分析酶特异性

Analysis of enzyme specificity by multiple substrate kinetics.

作者信息

Schellenberger V, Siegel R A, Rutter W J

机构信息

Hormone Research Institute, University of California, San Francisco 94143.

出版信息

Biochemistry. 1993 Apr 27;32(16):4344-8. doi: 10.1021/bi00067a025.

Abstract

Multiple approaches for screening large sets of compounds for a specific function are of growing interest. The use of substrate mixtures to characterize the specificity of enzymes has been limited so far to compounds with similar kinetic parameters, because the data were analyzed by applying the kinetics of two competing substrates. In this study we introduce a statistical method for the analysis of reactions with many competing substrates which makes use of the specific features of multiple substrate kinetics. It is assumed that the relative concentrations of all substrates in a mixture can be monitored by high-performance liquid chromatography or a similar technique. Relative second-order rate constants, i.e., kcat/KM values, can be calculated for all substrates in the mixture from the resulting data set. The calculation uses the fact that there is a relationship between the concentrations of all pairs of substrates in the mixture. As a result, the precision of the calculated parameters is increased and the range of kinetic constants that can be obtained from one experiment is considerably expanded. Simulations demonstrate that the precision in the kinetic parameters increases with the number of substrates in the mixture. In fact, estimation of ratios of rate constants can be improved (or made possible) for substrates with order of magnitude differences in reactivity by adding "dummy" substrates with intermediate reactivities, even though the rate constants for dummy substrates are themselves of no intrinsic interest.

摘要

筛选大量化合物以寻找特定功能的多种方法正越来越受到关注。迄今为止,使用底物混合物来表征酶的特异性仅限于具有相似动力学参数的化合物,因为数据是通过应用两种竞争性底物的动力学进行分析的。在本研究中,我们引入了一种统计方法来分析具有多种竞争性底物的反应,该方法利用了多底物动力学的特定特征。假设混合物中所有底物的相对浓度可以通过高效液相色谱或类似技术进行监测。可以从所得数据集中计算混合物中所有底物的相对二级速率常数,即kcat/KM值。该计算利用了混合物中所有底物对的浓度之间存在关系这一事实。结果,计算参数的精度提高了,并且从一次实验中可以获得的动力学常数范围大大扩展。模拟表明,动力学参数的精度随着混合物中底物数量的增加而提高。实际上,通过添加具有中等反应性的“虚拟”底物,即使虚拟底物的速率常数本身并无内在意义,但对于反应性存在数量级差异的底物,速率常数比值的估计也可以得到改善(或成为可能)。

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