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配体-受体相互作用的热力学参数:计算与误差范围

Thermodynamic parameters of ligand-receptor interactions: computation and error margins.

作者信息

Pliska V

机构信息

Department of Animal Science, Swiss Federal Institute of Technology, ETH Zürich, Switzerland.

出版信息

J Recept Signal Transduct Res. 1997 Jan-May;17(1-3):495-510. doi: 10.3109/10799899709036623.

Abstract

A semiempirical relationship describing the temperature function of ligand-receptor dissociation constants (Kd), derived from heat capacities of the system in equilibrium, is suggested for computation of the standard enthalpy (delta H degree) and standard entropy (delta S degree) changes in equilibrium. The use of the linear expression (called Gibbs-van't Hoff equation) may lead to inaccurate results when heat capacity Cp displays a considerable temperature dependence. The accuracy of Kd, delta H degree and delta S degree has been studied by simulation experiments. In the case of Kd, deviations of computed from "true" values are determined by both the accuracy of experimental data used for its estimation, and by the shape of the binding isotherm (for instance, by Hill coefficients or by the presence of low affinity sites). As a rule, if errors of bound ligand measurements are greater than 20 per cent, Kd estimates ought to be considered as less reliable. However, computations of delta H degree and delta S degree that use such Kd values, are more correct, probably due to an error compensation. The suggested nonlinear temperature function of Kd enables an estimate of the heat capacity of the system and its temperature dependence.

摘要

本文提出了一种半经验关系,用于描述配体-受体解离常数(Kd)的温度函数,该函数源自平衡体系的热容,用于计算平衡时的标准焓变(ΔH°)和标准熵变(ΔS°)。当热容Cp表现出显著的温度依赖性时,使用线性表达式(称为吉布斯-范特霍夫方程)可能会导致不准确的结果。通过模拟实验研究了Kd、ΔH°和ΔS°的准确性。对于Kd,计算值与“真实”值的偏差既取决于用于估计它的实验数据的准确性,也取决于结合等温线的形状(例如,由希尔系数或低亲和力位点的存在)。通常,如果结合配体测量的误差大于20%,则Kd估计值应被视为不太可靠。然而,使用此类Kd值计算的ΔH°和ΔS°更准确,这可能是由于误差补偿。所提出的Kd的非线性温度函数能够估计体系的热容及其温度依赖性。

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