Varón R, García-Moreno M, Valera-Ruipérez D, García-Molina F, García-Cánovas F, Ladrón-de Guevara R G, Masiá-Pérez J, Havsteen B H
Grupo de Modelización en Bioquímica, Departamento de Química-Física, Escuela Politécnica Superior de Albacete, Universidad de Castilla-La Mancha, Albacete, Spain.
J Theor Biol. 2006 Oct 7;242(3):743-54. doi: 10.1016/j.jtbi.2006.04.013. Epub 2006 May 5.
Starting from a simple general reaction mechanism of activation of aspartic proteinase zymogens involving an uni- and a bimolecular simultaneous route, the time course equation of the concentration of the zymogen and of the activated enzyme have been derived. From these equations, an analysis quantifying the relative contribution to the global process of the two routes has been carried out for the first time. This analysis suggests a way to predict the time course of the relative contribution as well as the effect of the initial zymogen and activating enzyme concentrations, on the relative weight. An experimental design and kinetic data analysis is suggested to estimate the kinetic parameters involved in the reaction mechanism proposed. Finally, we apply some of our results to experimental data obtained by other authors in experimental studies of the activation of some aspartic proteinase zymogens.
从涉及单分子和双分子同步途径的天冬氨酸蛋白酶原激活的简单一般反应机制出发,推导了酶原和活化酶浓度的时间进程方程。基于这些方程,首次对两条途径对整体过程的相对贡献进行了定量分析。该分析提出了一种预测相对贡献的时间进程以及初始酶原和活化酶浓度对相对权重影响的方法。建议进行实验设计和动力学数据分析,以估计所提出反应机制中涉及的动力学参数。最后,我们将部分结果应用于其他作者在某些天冬氨酸蛋白酶原激活实验研究中获得的实验数据。