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Analysis of crystal structures of aspartic proteinases: On the role of amino acid residues adjacent to the catalytic site of pepsin-like enzymes

机译:天冬氨酸蛋白酶的晶体结构分析:关于胃蛋白酶样酶催化位点附近的氨基酸残基的作用

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摘要

To elucidate the role of amino acid residues adjacent to the catalytic site of pepsin-like enzymes, we analyzed and compared the crystal structures of these enzymes, their complexes with inhibitors, and zymogens in the active site area (a total of 82 structures). In addition to the water molecule (W1) located between the active carboxyls and playing a role of the nucleophile during catalytic reaction, another water molecule (W2) at the vicinity of the active groups was found to be completely conserved. This water molecule plays an essential role in formation of a chain of hydrogen-bonded residues between the active site flap and the active carboxyls on ligand binding. These data suggest a new approach to understanding the role of residues around the catalytic site, which can assist the development of the catalytic reaction. The influence of groups adjacent to the active carboxyls is manifested by pepsin activity at pH 1.0. Some features of pepsin-like enzymes and their mutants are discussed in the framework of the approach.
机译:为了阐明邻近胃蛋白酶样酶催化位点的氨基酸残基的作用,我们分析并比较了这些酶的晶体结构,它们与抑制剂的复合物以及活性位点区域中的酶原(总共82个结构)。除了位于活性羧基之间的水分子(W1)并在催化反应过程中发挥亲核试剂的作用外,还发现在活性基团附近的另一个水分子(W2)被完全保守。该水分子在活性位点襟翼和配体结合上的活性羧基之间的氢键残基链的形成中起重要作用。这些数据提出了一种理解残基在催化位点上的作用的新方法,该方法可以帮助催化反应的发展。邻近活性羧基的基团的影响通过胃蛋白酶在pH 1.0时的活性来体现。在该方法的框架内讨论了胃蛋白酶样酶及其突变体的一些特征。

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