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[非平衡条件下蛋白质变性热谱图的解读]

[Interpretation of thermograms of protein denaturation in non-equilibrium conditions].

作者信息

Burova T V, Varfolomeeva E P, Grinberg V Ia, Suchkov V V, Papkov V S, Bauve Kh, Tolstoguzov V B

出版信息

Biofizika. 1990 Mar-Apr;35(2):222-7.

PMID:2369595
Abstract

Data are presented concerning the effect of heating rate on the denaturation parameters of small and oligomeric globular proteins: Kunitz trypsin inhibitor from soybeans and 1,5-Ribulose Bisphosphate Carboxylase from tobacco leaves. Substantional dependence of denaturation temperature on the heating rate reflects non-equilibrium pattern of denaturation of these proteins under experimental conditions. To interpret these data a kinetic approach is proposed, which permits determination of equilibrium value of the denaturation temperature and of the constant of de- and renaturation rate. The conformation transitions in the proteins studied are shown to be relatively slow processes. Their rate is comparable to the velocity of temperature change in a calorimeter, which is the cause of non-equilibrium effects in a calorimetric experiment.

摘要

本文给出了关于加热速率对小分子和寡聚球状蛋白变性参数影响的数据

大豆中的Kunitz胰蛋白酶抑制剂和烟草叶片中的1,5-二磷酸核酮糖羧化酶。变性温度对加热速率的显著依赖性反映了这些蛋白质在实验条件下变性的非平衡模式。为了解释这些数据,提出了一种动力学方法,该方法可以确定变性温度的平衡值以及变性和复性速率常数。研究的蛋白质中的构象转变显示为相对缓慢的过程。它们的速率与量热计中温度变化的速度相当,这是量热实验中非平衡效应的原因。

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