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热力学非理想性对α-糜蛋白酶催化酯水解动力学的影响:存在异构化平衡的模型体系

Effects of thermodynamic nonideality on the kinetics of ester hydrolysis by alpha-chymotrypsin: a model system with preexistence of the isomerization equilibrium.

作者信息

Bergman D A, Shearwin K E, Winzor D J

机构信息

Department of Biochemistry, University of Queensland, St. Lucia, Australia.

出版信息

Arch Biochem Biophys. 1989 Oct;274(1):55-63. doi: 10.1016/0003-9861(89)90414-1.

Abstract

The effects of a small inert solute, sucrose, on the kinetics of hydrolysis of N-acetyl-tryptophan ethyl ester by bovine alpha-chymotrypsin have been investigated. In studies at pH 7 and 20 degrees C the presence of 0.5 M sucrose in assay mixtures caused no discernible change in kinetic parameters, a result consistent with existence of the enzyme in a single conformational state under those conditions. However, at pH 3.5 and 50 degrees C, conditions under which the enzyme comprises an equilibrium mixture of compact and expanded isomeric states, inclusion of the inert solute led to a considerable decrease in Michaelis constant (0.84 to 0.61 mM) but no significant change in maximal velocity. These results were shown to be amenable to quantitative interpretation in terms of thermodynamic nonideality effects on catalysis by an enzyme undergoing reversible isomerization in the absence of substrate. For that analysis, which required experimental estimates of the equilibrium constant for preexisting isomerization of enzyme and the activity coefficient of substrate, the magnitude of the former (0.3) was obtained by difference spectroscopy: liquid-liquid partition studies with bromobenzene as organic phase were used to determine the effect of sucrose on the activity coefficient of N-acetyltryptophan ethyl ester. Such agreement between experimental kinetic findings and theoretical predictions based on considerations of excluded volume points to the possible use of the space-filling effects of small solutes for delineating the gross extent of conformational changes associated with reversible isomerization of proteins, and hence to the potential of thermodynamic nonideality as a probe for studying protein denaturation mechanisms as well as substrate-mediated changes associated with enzyme reaction mechanisms.

摘要

研究了一种小分子惰性溶质蔗糖对牛α-胰凝乳蛋白酶催化N-乙酰色氨酸乙酯水解动力学的影响。在pH 7和20℃条件下进行的研究中,测定混合物中存在0.5 M蔗糖时,动力学参数没有明显变化,这一结果与该条件下酶以单一构象状态存在相一致。然而,在pH 3.5和50℃条件下,此时酶由紧密和伸展异构体状态的平衡混合物组成,加入惰性溶质导致米氏常数显著降低(从0.84 mM降至0.61 mM),但最大反应速度没有明显变化。结果表明,这些结果可以根据热力学非理想性对在无底物时发生可逆异构化的酶催化作用的影响进行定量解释。对于该分析,需要实验估计酶预先存在的异构化平衡常数和底物的活度系数,前者的大小(0.3)通过差示光谱法获得:以溴苯为有机相的液-液分配研究用于确定蔗糖对N-乙酰色氨酸乙酯活度系数的影响。实验动力学结果与基于排除体积考虑的理论预测之间的这种一致性表明,小分子溶质的空间填充效应可能用于描绘与蛋白质可逆异构化相关的构象变化的总体程度,因此热力学非理想性有可能作为研究蛋白质变性机制以及与酶反应机制相关的底物介导变化的探针。

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