Enzyme-catalyzed detoxication reactions: mechanisms and stereochemistry.

R N Armstrong
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引用次数: 102

Abstract

Enzyme catalyzed detoxication reactions are one of the primary defenses organisms have against chemical insult. This article reviews current chemical approaches to understanding the cooperative role of enzymes in the metabolism of foreign compounds. Emphasis is placed on chemical and stereochemical studies which help elucidate the mechanism of action and active-site topologies of the detoxication enzymes. The stereoselectivity of the cytochromes P-450 and flavin containing monooxygenases as well as the role of hemoglobin and lipid peroxidation in the primary metabolism of xenobiotics is discussed. Current knowledge of the mechanism and stereoselectivity of epoxide hydrolase is also presented. Three enzymes involved in secondary metabolism of xenobiotics, UDP-glucuronosyltransferase, sulfotransferase and glutathione S-transferase are discussed with particular emphasis on active site topology and cooperative participation with the enzymes of primary metabolism.

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酶催化解毒反应:机制和立体化学。
酶催化的解毒反应是生物体抵御化学侵害的主要防御手段之一。本文综述了目前了解酶在外源化合物代谢中的协同作用的化学方法。重点放在化学和立体化学研究,这有助于阐明解毒酶的作用机制和活性位点拓扑结构。讨论了细胞色素P-450和含黄素单加氧酶的立体选择性,以及血红蛋白和脂质过氧化在异种生物初级代谢中的作用。对环氧化物水解酶的机理和立体选择性进行了综述。本文讨论了三种参与外源物次生代谢的酶,即udp -葡萄糖醛基转移酶、硫代转移酶和谷胱甘肽s -转移酶,特别强调了活性位点拓扑结构及其与初级代谢酶的协同参与。
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