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胰凝乳蛋白酶催化口袋的自稳定模型。整个催化循环的能量概况。

A self-stabilized model of the chymotrypsin catalytic pocket. The energy profile of the overall catalytic cycle.

作者信息

Hudáky Péter, Perczel András

机构信息

Department of Theoretical Chemistry, Eötvös Loránd University, Budapest 112, Hungary.

出版信息

Proteins. 2006 Mar 15;62(3):749-59. doi: 10.1002/prot.20827.

Abstract

A model of the catalytic triad of chymotrypsin is built assuring the arrangement and properties as they are within the complete enzyme. The model contains 18 amino acid residues of chymotrypsin and its substrate. A total of 135 atoms (including 70 heavy atoms) were subjected to full ab initio geometry optimizations through 127 individual steps along the reaction coordinate of the complete catalytic mechanism. It was shown that the described model of the catalytic apparatus forms a self-stabilized molecule ensemble without the rest of the enzyme and substrate. According to the calculations, the formations of the first and second tetrahedral intermediates in the model have 20.3 and 15.7 kcal/mol activation energy barriers, respectively. Removing elements of the catalytic apparatus such as the (1) catalytic aspartate or (2) the anion hole, as well as (3) inserting a water molecule "early" in the catalytic process, or (4) introducing conformational rigidity of the substrate, results in an increase of the above energy barrier of the first catalytic step in the model by 6.4, 13.7, 3.7, and 4.1 kcal/mol, respectively. Based on the calculated process one can conclude that the catalytic reaction in this model is much more similar to the reaction in the enzyme than to the reference reaction. To our knowledge, this is the first model system that mimics the complete catalytic mechanism.

摘要

构建了胰凝乳蛋白酶催化三联体模型,确保其排列和性质与完整酶中的情况一致。该模型包含胰凝乳蛋白酶及其底物的18个氨基酸残基。总共135个原子(包括70个重原子)沿着完整催化机制的反应坐标,通过127个单独步骤进行了全从头算几何优化。结果表明,所描述的催化装置模型在没有酶和底物其余部分的情况下形成了一个自稳定的分子集合。根据计算,模型中第一和第二个四面体中间体的形成分别具有20.3和15.7千卡/摩尔的活化能垒。去除催化装置的元素,如(1)催化性天冬氨酸或(2)阴离子空穴,以及(3)在催化过程“早期”插入一个水分子,或(4)引入底物的构象刚性,会导致模型中第一步催化的上述能垒分别增加6.4、13.7、3.7和4.1千卡/摩尔。基于计算过程可以得出结论,该模型中的催化反应与酶中的反应比与参考反应更相似。据我们所知,这是第一个模拟完整催化机制的模型系统。

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