Alberty Robert A
Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
J Phys Chem B. 2005 May 12;109(18):9132-9. doi: 10.1021/jp044162j.
The determination of apparent equilibrium constants and heats of enzyme-catalyzed reactions provides a way to determine Delta(f)G degrees and Delta(f)H degrees of species of biochemical reactants. These calculations are more difficult than the calculation of transformed thermodynamic properties from species properties, and they are an application of the inverse Legendre transform. The Delta(f)G degrees values of species of a reactant can be calculated from an apparent equilibrium constant if the Delta(f)G degrees values are known for all the species of all the other reactants and the pKs of the reactant of interest are known. The Delta(f)H degrees of species of a reactant can be calculated from the heat of reaction if the Delta(f)H degrees values are known for all species of the other reactants and Delta(f)G degrees values are known for all species in the reaction. The standard enthalpies of acid dissociation of the reactant of interest are also needed. The inverse Legendre transformation is accomplished by using computer programs to set up the simultaneous equations that involve the Delta(f)H degrees of the species and solving them. Thirty two new species matrixes providing Delta(f)G degrees values and eight new species matrixes providing Delta(f)H degrees values are calculated. It is the specificity and speed of enzyme-catalyzed reactions that make it possible to determine standard thermodynamic properties of complicated species in aqueous solution that could never have been obtained classically.
酶催化反应的表观平衡常数和热效应的测定为确定生物化学反应物物种的Δ(f)G°和Δ(f)H°提供了一种方法。这些计算比根据物种性质计算转化的热力学性质更困难,它们是逆勒让德变换的一种应用。如果已知所有其他反应物物种的Δ(f)G°值以及所关注反应物的pK值,则可以根据表观平衡常数计算反应物物种的Δ(f)G°值。如果已知其他反应物所有物种的Δ(f)H°值以及反应中所有物种的Δ(f)G°值,则可以根据反应热计算反应物物种的Δ(f)H°。还需要所关注反应物的酸解离标准焓。通过使用计算机程序建立涉及物种Δ(f)H°的联立方程并求解来完成逆勒让德变换。计算出32个提供Δ(f)G°值的新物种矩阵和8个提供Δ(f)H°值的新物种矩阵。正是酶催化反应的特异性和速度使得确定水溶液中复杂物种的标准热力学性质成为可能,而这些性质是传统方法永远无法获得的。