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Some examples of the use of computer-produced contour plots in the fitting of enzyme rate equations to reaction-velocity measurements

机译:在将酶速率方程拟合到反应速度测量中使用计算机生成的等高线图的一些示例

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摘要

The use of computer-based isotach plots, relating reaction velocity to simultaneous variation of two substrates or effectors of an enzyme, in producing estimates of the parameters of enzyme rate equations was investigated. The computer program (`SYMAP') incorporates an interpolation algorithm, and the superiority of this over visual estimation in producing interpolated velocity values for the estimation of parameter values by conventional double-reciprocal plots is described. The usefulness of the SYMAP program in monitoring the process of fitting data obtained by simultaneous changes in two experimental variables is also described. It is shown that if the residual errors are weighted by a procedure described elsewhere (Ottaway, 1971b, 1973), the percentage error of the computed velocity is distributed evenly over a plot which contains a 100-fold variation in the concentration of one substrate and a 500-fold variation in the concentration of Mg2+, and in which the velocity of the reaction (that catalysed by NAD kinase) varies over a 60-fold range. The two-dimensional percentage error plot was used to assess the limits within which an incomplete inhibition equation is valid, and to detect a discrepancy in an expected good fit, caused by an impurity in one of the substrates.
机译:研究了基于计算机的等速线图的使用,该图将反应速度与酶的两种底物或效应物的同时变化相关联,用于产生酶速率方程参数的估计值。计算机程序(“ SYMAP”)结合了插值算法,并且描述了该方法在生成插值速度值以通过常规双倒数图进行参数值估计方面优于视觉估计。还介绍了SYMAP程序在监视通过同时改变两个实验变量获得的拟合数据过程中的有用性。结果表明,如果通过其他地方描述的方法(Ottaway,1971b,1973)对残留误差进行加权,则计算出的速度百分比误差将均匀分布在包含一种底物浓度和浓度的100倍变化的图中。 Mg 2 + 浓度变化500倍,并且反应速度(由NAD激酶催化)变化60倍。二维百分比误差图用于评估不完全抑制方程式有效的极限,并检测由基板之一中的杂质引起的预期良好拟合的差异。

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