Darvey I G, Shrager R, Kohn L D
J Biol Chem. 1975 Jun 25;250(12):4696-701.
Integrated steady state rate equations have been used to determine the kinetic constants (Vs, Ks, Vp, and Kp) and rate constants (k1, k2, k3, and k4) of the reversible enzyme mechanism: (see article). The fumarase reaction has been used as a model to illustrate the procedures for determining these constants. In contrast to initial velocity studies, the values of the constants have been obtained by examining the enzyme reaction in only one direction rather than in both forward and reverse directions. To accomplish this, a new procedure is described for fitting data to integrated rate equations which eliminates problems encountered when data are analyzed graphically. The advantages of examining on enzyme reaction in one direction with these new procedures allow this method to be extended to the examination of enzymes with simple mechanisms where initial velocities are difficult to measure because either the substrate or product is not readily available, or because the reaction is not readily reversible.
综合稳态速率方程已被用于确定可逆酶机制的动力学常数(Vs、Ks、Vp和Kp)和速率常数(k1、k2、k3和k4):(见文章)。延胡索酸酶反应已被用作一个模型来说明确定这些常数的程序。与初速度研究不同,这些常数的值是通过仅在一个方向而不是正向和反向两个方向上研究酶反应获得的。为了实现这一点,描述了一种将数据拟合到综合速率方程的新程序,该程序消除了在以图形方式分析数据时遇到的问题。使用这些新程序在一个方向上研究酶反应的优点使得该方法能够扩展到对具有简单机制的酶的研究,在这些酶中,由于底物或产物不易获得,或者由于反应不易逆转,初速度难以测量。