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大肠杆菌(lacZ)β-半乳糖苷酶作用的结构观点。

A structural view of the action of Escherichia coli (lacZ) beta-galactosidase.

作者信息

Juers D H, Heightman T D, Vasella A, McCarter J D, Mackenzie L, Withers S G, Matthews B W

机构信息

Institute of Molecular Biology, Howard Hughes Medical Institute and Department of Physics, University of Oregon, Eugene, Oregon 97403-1229, USA.

出版信息

Biochemistry. 2001 Dec 11;40(49):14781-94. doi: 10.1021/bi011727i.

Abstract

The structures of a series of complexes designed to mimic intermediates along the reaction coordinate for beta-galactosidase are presented. These complexes clarify and enhance previous proposals regarding the catalytic mechanism. The nucleophile, Glu537, is seen to covalently bind to the galactosyl moiety. Of the two potential acids, Mg(2+) and Glu461, the latter is in better position to directly assist in leaving group departure, suggesting that the metal ion acts in a secondary role. A sodium ion plays a part in substrate binding by directly ligating the galactosyl 6-hydroxyl. The proposed reaction coordinate involves the movement of the galactosyl moiety deep into the active site pocket. For those ligands that do bind deeply there is an associated conformational change in which residues within loop 794-804 move up to 10 A closer to the site of binding. In some cases this can be inhibited by the binding of additional ligands. The resulting restricted access to the intermediate helps to explain why allolactose, the natural inducer for the lac operon, is the preferred product of transglycosylation.

摘要

本文展示了一系列旨在模拟β-半乳糖苷酶反应坐标上中间体的配合物结构。这些配合物阐明并完善了先前关于催化机制的提议。亲核试剂Glu537被发现与半乳糖基部分共价结合。在两种潜在的酸Mg(2+)和Glu461中,后者更有利于直接协助离去基团离去,这表明金属离子起次要作用。钠离子通过直接连接半乳糖基6-羟基参与底物结合。提出的反应坐标涉及半乳糖基部分深入活性位点口袋的移动。对于那些确实深入结合的配体,会有相关的构象变化,其中794 - 804环内的残基向结合位点移动近10埃。在某些情况下,这可以被额外配体的结合所抑制。对中间体的这种受限访问有助于解释为什么乳糖操纵子的天然诱导剂别乳糖是转糖基化的首选产物。

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