Khrapunov Sergei
Department of Biochemistry, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, NY 10461, United States.
Curr Protein Pept Sci. 2018;19(11):1088-1091. doi: 10.2174/1389203719666180521092615.
The thermodynamic analyses of proteins, protein-ligands and protein-nucleic acid complexes involves the entropy-enthalpy (S-H) compensation phenomenon. We have examined the question whether the observed compensation is artificial or reflects anything more than the well-known laws of statistical thermodynamics (so-called extra-thermodynamic compensation). We have shown that enthalpy- entropy compensation (EEC) is mainly the trivial consequence of the basic thermodynamic laws and there are no experimental evidences for existence of the extra-thermodynamic compensation. In most cases EEC obtained in the experiments through the plot enthalpies (ΔH) and entropies (TΔS) versus one another is meaningless due to the large correlated errors in ΔH and TΔS, unless special measures are taken to minimize, quantify and propagate these errors. Van't Hoff equation can be used for entropy calculation in limited cases when enthalpy is measured in independent experiments. Eyring equation cannot be used for calculation of entropy in any case and should be excluded from scientific use. Both equation, Van't Hoff and Eyring cannot be used for simultaneous calculation of the enthalpy and entropy values using one set of data. All the data obtained in this way should be recognized as erroneous.
对蛋白质、蛋白质-配体和蛋白质-核酸复合物的热力学分析涉及熵-焓(S-H)补偿现象。我们已经研究了一个问题,即观察到的补偿是人为的,还是反映了比众所周知的统计热力学定律更多的东西(所谓的超热力学补偿)。我们已经表明,焓-熵补偿(EEC)主要是基本热力学定律的平凡结果,并且没有实验证据表明存在超热力学补偿。在大多数情况下,通过绘制焓(ΔH)和熵(TΔS)相互关系图在实验中获得的EEC是没有意义的,因为ΔH和TΔS中存在很大的相关误差,除非采取特殊措施来最小化、量化和传播这些误差。范特霍夫方程在通过独立实验测量焓的有限情况下可用于熵的计算。在任何情况下,艾林方程都不能用于熵的计算,应从科学应用中排除。范特霍夫方程和艾林方程都不能用于使用一组数据同时计算焓和熵值。以这种方式获得的所有数据都应被视为错误的。