Bayram M, Bennett J P, Dewar M C
School of Mathematical Sciences, University of Bath, United Kingdom.
Acta Biotheor. 1993 Jun;41(1-2):53-62. doi: 10.1007/BF00712774.
In earlier work we have described how computer algebra may be used to derive composite rate laws for complete systems of equations, using the mathematical technique of Gröbner Bases (Bennett, Davenport and Sauro, 1988). Such composite rate laws may then be fitted to experimental data to yield estimates of kinetic parameters. Recently we have been investigating the practical application of this methodology to the estimation of kinetic parameters for the closed two enzyme system of aspartate aminotransferase (AAT) and malate dehydrogenase (MDH) (Fisher 1990a; Fisher 1990b; Bennett and Fisher, 1990): aspartate + alpha-ketoglutamate <--> glutamate + oxaloacetate; oxaloacetate + NADH <--> malate + NAD. In this paper we present a fuller (although not yet complete) analysis of the system. We show how symbolic estimates of the error behaviour of the parameters can be made, and used to identify those which are of kinetic significance. Finally we consider how metabolic control analysis can be applied directly to such a system.
在早期的工作中,我们已经描述了如何使用计算机代数,借助格罗比纳基(Gröbner Bases)的数学技术(贝内特、达文波特和绍罗,1988年),为完整的方程组推导复合速率定律。然后,可以将这些复合速率定律与实验数据进行拟合,以得出动力学参数的估计值。最近,我们一直在研究这种方法在估计天冬氨酸转氨酶(AAT)和苹果酸脱氢酶(MDH)的封闭双酶系统动力学参数方面的实际应用(费舍尔,1990a;费舍尔,1990b;贝内特和费舍尔,1990年):天冬氨酸 + α-酮戊二酸 <--> 谷氨酸 + 草酰乙酸;草酰乙酸 + NADH <--> 苹果酸 + NAD。在本文中,我们对该系统进行了更全面(尽管尚未完成)的分析。我们展示了如何对参数的误差行为进行符号估计,并用于识别那些具有动力学意义的参数。最后,我们考虑如何将代谢控制分析直接应用于这样一个系统。