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通过量热法得出的蛋白质与尿素和盐酸胍相互作用的参数与变性剂的m值不一致。

Calorimetrically-derived parameters for protein interactions with urea and guanidine-HCl are not consistent with denaturant m values.

作者信息

DeKoster G T, Robertson A D

机构信息

Department of Biochemistry, University of Iowa, Iowa City 52242, USA.

出版信息

Biophys Chem. 1997 Feb 28;64(1-3):59-68. doi: 10.1016/s0301-4622(96)02219-3.

Abstract

A recent study used calorimetric data and a stoichiometric binding model to derive binding constants, enthalpies, and stoichiometries describing the interaction between proteins and the chemical denaturants, urea and guanidine-HCl (Makhatadze and Privalov, J. Mol. Biol., 226 (1992) 491). In the present study, these parameters have been used to calculate the excess free energy, delta Gex, associated with interactions between chemical denaturants and the three proteins examined in the calorimetric study: ribonuclease A, cytochrome c, and lysozyme. This free energy and its dependence on denaturant concentration, the denaturant m value, have then been compared to experimental results from chemical denaturation experiments. The magnitudes of m values calculated from the calorimetric studies are significantly greater, 20 to 100%, than the observed values in urea. Calculated m values for guanidine-HCl range from about 10% greater than observed values for cytochrome c to over 100% greater for lysozyme. Discrepancies between calculated and observed m values are probably attributable to incomplete binding isotherms in the calorimetric studies. An additional issue raised in this study concerns the correlation of m values with changes in accessible surface areas upon unfolding. For proteins that undergo a two-state unfolding reaction, experimental m values can vary by more than a factor of two for a given protein, depending on the solution conditions. This observation suggests that factors beyond changes in accessible surface areas play a major role in determining m values.

摘要

最近的一项研究利用量热数据和化学计量结合模型得出了结合常数、焓以及化学计量关系,这些描述了蛋白质与化学变性剂尿素和盐酸胍之间的相互作用(马卡塔泽和普里瓦洛夫,《分子生物学杂志》,226 (1992) 491)。在本研究中,这些参数已被用于计算与化学变性剂和量热研究中所检测的三种蛋白质(核糖核酸酶A、细胞色素c和溶菌酶)之间相互作用相关的过量自由能ΔGex。然后将该自由能及其对变性剂浓度的依赖性(变性剂m值)与化学变性实验的实验结果进行了比较。从量热研究计算得到的m值大小比在尿素中观察到的值显著更大,高出20%至100%。盐酸胍的计算m值范围从比细胞色素c的观察值大10%左右到比溶菌酶的观察值大100%以上。计算值与观察值之间的差异可能归因于量热研究中不完整的结合等温线。本研究中提出的另一个问题涉及m值与展开时可及表面积变化之间的相关性。对于经历两态展开反应的蛋白质,对于给定的蛋白质,实验m值可因溶液条件而异,相差两倍以上。这一观察结果表明,除了可及表面积变化之外的因素在决定m值方面起主要作用。

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