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微粒体和胞质溶胶环氧化物水解酶对烯丙基苯、草蒿脑、丁香酚和黄樟素的2',3'-烯丙基环氧化物的水解作用。

Hydrolysis of the 2',3'-allylic epoxides of allylbenzene, estragole, eugenol, and safrole by both microsomal and cytosolic epoxide hydrolases.

作者信息

Luo G, Qato M K, Guenthner T M

机构信息

Department of Pharmacology, University of Illinois College of Medicine, Chicago 60612.

出版信息

Drug Metab Dispos. 1992 May-Jun;20(3):440-5.

PMID:1521503
Abstract

2',3'-Allylic epoxide derivatives of allylbenzene and its analogs estragole, eugenol, and safrole were synthesized, and their enzymatic conversion to dihydrodiols by cytosolic and microsomal epoxide hydrolases was examined. All four epoxides were good substrates for both epoxide hydrolases, with Michaelis constants in the low micromolar range. Two putatively selective inhibitors of cytosolic and microsomal epoxide hydrolases, trichloropropylene oxide and nordihydroguaiaretic acid, were used to inhibit the hydrolysis of these allylic epoxides. Minimal selectivity toward either hydrolase was seen with either inhibitor, suggesting that the "selectivity" of these inhibitors is highly substrate-dependent. The susceptibilities of these epoxides to rapid hydrolysis by both epoxide hydrolases may explain their low genotoxic potencies in vivo.

摘要

合成了烯丙基苯及其类似物草蒿脑、丁香酚和黄樟素的2',3'-烯丙基环氧化物衍生物,并检测了它们通过胞质和微粒体环氧化物水解酶酶促转化为二氢二醇的情况。所有四种环氧化物都是两种环氧化物水解酶的良好底物,米氏常数在低微摩尔范围内。使用两种假定的胞质和微粒体环氧化物水解酶选择性抑制剂环氧三氯丙烷和去甲二氢愈创木酸来抑制这些烯丙基环氧化物的水解。两种抑制剂对任何一种水解酶的选择性都很低,这表明这些抑制剂的“选择性”高度依赖于底物。这些环氧化物对两种环氧化物水解酶快速水解的敏感性可能解释了它们在体内的低遗传毒性。

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