首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Two different ways that hydrogen ions are involved in the thermodynamics and rapid-equilibrium kinetics of the enzymatic catalysis of SP and S+H(2)OP.
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Two different ways that hydrogen ions are involved in the thermodynamics and rapid-equilibrium kinetics of the enzymatic catalysis of SP and S+H(2)OP.

机译:氢离子参与SP和S + H(2)OP的酶催化的热力学和快速平衡动力学的两种不同方式。

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摘要

Hydrogen ions are involved in two different ways in the thermodynamics and rapid-equilibrium kinetics of enzyme-catalyzed reactions. The two ways are through pKs and through the production or consumption of hydrogen ions in the mechanism. These ways are examined for the catalyzed reactions SP and S+H(2)OP. Since the apparent equilibrium constant K' can be calculated from the kinetic parameters by use of the Haldane equation, the treatment of the effects of pH must be consistent in thermodynamics and kinetics. This leads to a new kind of Haldane equation that involves 10(pH) or 10(-pH) in addition to the kinetic parameters when hydrogen ions are produced or consumed. These concepts are applicable to more complicated reactions and rate equations. Derivations of equations for calculating these two types of pH effects are discussed in thermodynamics and rapid-equilibrium kinetics. A computer program is used to make four plots of apparent equilibrium constants and changes in the binding of hydrogen ions in the catalyzed reaction.
机译:氢离子以两种不同的方式参与酶催化反应的热力学和快速平衡动力学。两种方式是通过pKs以及通过机制产生或消耗氢离子。检查了这些方法的催化反应SP和S + H(2)OP。由于可以使用Haldane方程根据动力学参数计算表观平衡常数K',因此在热力学和动力学方面,pH值的处理必须保持一致。这导致了一种新的Haldane方程,除了产生或消耗氢离子时的动力学参数外,还涉及10(pH)或10(-pH)。这些概念适用于更复杂的反应和速率方程。在热力学和快速平衡动力学中讨论了计算这两种pH效应的方程式。使用计算机程序绘制了四个表观平衡常数图和催化反应中氢离子结合的变化。

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