Mechanism and stereoelectronic effects in the lysozyme reaction.

A J Kirby
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引用次数: 46

Abstract

Lysozyme occupies a special place in the history of enzymology as the first enzyme to have its three-dimensional crystal structure elucidated by Phillips and co-workers in 1965. The crystallography, and much biochemical work, revealed three factors likely to be important for the mechanism of action: catalysis by the carboxyl group of Glu-35, catalysis by the ionized carboxyl group of Asp-52, and the conformation of the bound polysaccharide substrate. The work of the last 20 years has defined likely roles for the catalytic groups, but discussion of the conformational question came to a head only very recently with the suggestion that the fundamental stereoelectronic requirements of the glycoside-cleavage reaction might be decisive. Recent work on all three interlinked factors are reviewed.

溶菌酶反应的机理和立体电子效应。
溶菌酶在酶学史上占有特殊的地位,因为它是1965年由Phillips及其同事首次阐明其三维晶体结构的酶。晶体学和大量的生化工作揭示了可能对作用机制起重要作用的三个因素:glu35羧基的催化作用,Asp-52电离羧基的催化作用,以及结合的多糖底物的构象。过去20年的工作已经确定了催化基团的可能作用,但构象问题的讨论直到最近才达到高潮,认为糖苷裂解反应的基本立体电子要求可能是决定性的。本文回顾了最近关于这三个相互联系的因素的工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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