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通过评估范特霍夫焓,是否总能区分二态和三态系统?

Is it always possible to distinguish two- and three-state systems by evaluating the van't Hoff enthalpy?

作者信息

Bakk Audun

机构信息

NORDITA-Nordic Institute for Theoretical Physics, Blegdamsvej 17, DK-2100 Copenhagen Ø, Denmark.

出版信息

Phys Biol. 2004 Dec;1(3-4):152-8. doi: 10.1088/1478-3967/1/3/002.

Abstract

Many small globular proteins are traditionally classified as thermodynamical two-state systems, i.e., the protein is either in the native, active state (folded) or in the denatured state (unfolded). We challenge this view and show that there may exist (protein) systems for which a van't Hoff analysis of experimental data cannot determine whether the system corresponds to two or three thermodynamical states when only temperatures in a narrow temperature region around the transition are considered. We generalize a widely employed two-state protein folding model to include a third, transition state. For this three-state system we systematically study the deviation of the calorimetric enthalpy (heat of transition) from the van't Hoff enthalpy, a measure of the two-stateness of a transition. We show that under certain conditions the heat capacity of the three-state system can be almost indistinguishable from the heat capacity for the two-state system over a broad temperature interval. The consequence may be that some three-state (or even more than three-states) systems have been misinterpreted as two-state systems when the conclusion is drawn solely upon the van't Hoff enthalpy. These findings are important not only for proteins, but also for the interpretation of thermodynamical systems in general.

摘要

许多小分子球状蛋白传统上被归类为热力学二态系统,即蛋白质要么处于天然的活性状态(折叠态),要么处于变性状态(未折叠态)。我们对这一观点提出质疑,并表明可能存在这样的(蛋白质)系统,当仅考虑转变点附近狭窄温度区域内的温度时,对实验数据进行范特霍夫分析无法确定该系统对应于两个还是三个热力学状态。我们将一个广泛应用的二态蛋白质折叠模型进行推广,使其包含第三个过渡态。对于这个三态系统,我们系统地研究了量热焓(转变热)与范特霍夫焓的偏差,范特霍夫焓是转变二态性的一种度量。我们表明,在某些条件下,三态系统的热容在很宽的温度区间内几乎与二态系统的热容无法区分。其结果可能是,当仅依据范特霍夫焓得出结论时,一些三态(甚至多于三态)系统被错误地解释为二态系统。这些发现不仅对蛋白质很重要,而且对一般热力学系统的解释也很重要。

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