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脂肪族3,4-环氧醇。经环氧水解酶的代谢及致突变活性。

Alphatic 3,4-epoxyalcohols. Metabolism by epoxide hydrase and mutagenic activity.

作者信息

Ortiz de Montellano P R, Boparai A S

出版信息

Biochim Biophys Acta. 1978 Dec 18;544(3):504-13. doi: 10.1016/0304-4165(78)90325-2.

Abstract

Rabbit hepatic microsomal epoxide hydrase catalyzes the rapid hydrolysis of 1,2-epoxy-4-heptanol to 1,2,4-heptanetriol. Both diastereomers of the substrate are hydrolyzed, and both product diastereomers are formed. Similarly both cis- and trans-3,4-epoxy-1-hexanol are hydrolyzed, albeit more slowly, to give 1,3,4-hexanetriol. The trans isomer gives exclusively one diastereomer (erythro) of the triol, while the cis isomer gives the other diastereomer (threo). The product expected if a primary cationic intermediate were to be formed and trapped intramolecularly during the hydrolysis of 1,2-epoxy-4-heptanol, 2-propyl-4-tetrahydrofuranol, was not observed. A comparison of the mutagenic activity in the Ames test of 1-heptane, 1-hepten-4-ol, 1,2-epoxyheptane, and 1,2-epoxy-4-heptanol revealed that only the latter is a detectable mutagen. A vicinal hydroxyl therefore does not interfere significantly with enzymatic epoxide hydrolysis, but it does enhance the bioalkylating potential of even an aliphatic epoxide.

摘要

兔肝微粒体环氧化物水解酶催化1,2 -环氧-4 -庚醇迅速水解为1,2,4 -庚三醇。底物的两种非对映异构体均被水解,并生成两种产物非对映异构体。同样,顺式和反式3,4 -环氧-1 -己醇也会被水解,尽管速度较慢,生成1,3,4 -己三醇。反式异构体只生成三醇的一种非对映异构体(赤藓醇型),而顺式异构体生成另一种非对映异构体(苏阿糖型)。在1,2 -环氧-4 -庚醇水解过程中,如果形成初级阳离子中间体并在分子内捕获,预期产物2 -丙基-4 -四氢呋喃醇未被观察到。对1 -庚烷、1 -庚烯-4 -醇、1,2 -环氧庚烷和1,2 -环氧-4 -庚醇在艾姆斯试验中的诱变活性进行比较,发现只有后者是可检测到的诱变剂。因此,邻位羟基不会显著干扰酶促环氧化物水解,但它确实会增强即使是脂肪族环氧化物的生物烷基化潜力。

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