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叙利亚仓鼠3-羟基-3-甲基戊二酰辅酶A还原酶的催化作用。组氨酸865、谷氨酸558和天冬氨酸766的假定作用。

Catalysis by Syrian hamster 3-hydroxy-3-methylglutaryl-coenzyme A reductase. Proposed roles of histidine 865, glutamate 558, and aspartate 766.

作者信息

Frimpong K, Rodwell V W

机构信息

Department of Biochemistry, Purdue University, West Lafayette, Indiana 47907-1153.

出版信息

J Biol Chem. 1994 Apr 15;269(15):11478-83.

PMID:7908908
Abstract

We employed the overexpressed catalytic domains of wild-type Syrian hamster 3-hydroxy-3-methylglutaryl-coenzyme A reductase (HMG-CoA reductase, EC 1.1.1.34) and of mutant enzymes E558Q, H865Q, and D766N to investigate the roles of Glu558, His865, and Asp786 in catalysis. Five reactions were studied: reductive deacylation of HMG-CoA or of mevaldyl-CoA to mevalonate, reduction of mevaldehyde to mevalonate, oxidation of mevaldyl-CoA to HMG-CoA, and oxidative acylation of mevaldehyde to HMG-CoA. While only the wild-type enzyme catalyzed all five reactions, mutant enzymes E558Q and H865Q catalyzed other reactions at significant rates. Mutant enzyme D766N, although apparently structurally similar to the wild-type enzyme, was inactive for all five reactions. While an ineffective catalyst for the overall reaction, mutant enzyme H865Q catalyzed the reduction of mevaldehyde to mevalonate at about the wild-type rate. Coenzyme A, which stimulated mevaldehyde reduction by the wild-type enzyme, inhibited mutant enzyme H865Q, apparently due to an impaired ability to protonate the coenzyme A thioanion, CoAS-. Based on these data, we infer that Glu558, His865, and Asp766 function in catalysis at the indicated stage of the overall reaction, [formula: see text] and we propose a revised mechanism for catalysis by mammalian HMG-CoA reductases.

摘要

我们使用野生型叙利亚仓鼠3-羟基-3-甲基戊二酰辅酶A还原酶(HMG-CoA还原酶,EC 1.1.1.34)以及突变酶E558Q、H865Q和D766N的过表达催化结构域,来研究Glu558、His865和Asp786在催化过程中的作用。研究了五个反应:HMG-CoA或甲羟戊酰辅酶A还原脱酰生成甲羟戊酸、甲羟醛还原生成甲羟戊酸、甲羟戊酰辅酶A氧化生成HMG-CoA以及甲羟醛氧化酰化生成HMG-CoA。虽然只有野生型酶能催化所有五个反应,但突变酶E558Q和H865Q能以显著速率催化其他反应。突变酶D766N虽然在结构上显然与野生型酶相似,但对所有五个反应均无活性。虽然突变酶H865Q对整个反应来说是一种低效催化剂,但它催化甲羟醛还原生成甲羟戊酸的速率与野生型酶相近。辅酶A能刺激野生型酶催化的甲羟醛还原反应,却抑制突变酶H865Q,这显然是由于其使辅酶A硫代阴离子CoAS-质子化的能力受损。基于这些数据,我们推断Glu558、His865和Asp766在整个反应的指定阶段发挥催化作用,[公式:见原文],并且我们提出了哺乳动物HMG-CoA还原酶催化作用的修正机制。

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