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1,1 - 二烷基乙烯在兔肝微粒体中的生物转化:环氧化反应的对映面选择性及环氧化物水解反应的对映选择性

The rabbit liver microsomal biotransformation of 1,1-dialkylethylenes: enantioface selection of epoxidation and enantioselectivity of epoxide hydrolysis.

作者信息

Bellucci G, Chiappe C, Cordoni A, Marioni F

机构信息

Department of Bioorganic Chemistry, University of Pisa, Italy.

出版信息

Chirality. 1994;6(3):207-12. doi: 10.1002/chir.530060308.

Abstract

The rabbit liver microsomal biotransformation of alpha-methylstyrene (1a), 2-methyl-1-hexene (1b), 2,4,4-trimethyl-1-pentene (1c), and 1,3,3-trimethyl-1-butene (1d) has been investigated with the aim at establishing the enantioface selection of the cytochrome P-450-promoted epoxidation of the double bond and the enantioselectivity of microsomal epoxide hydrolase(mEH)-catalyzed hydrolysis of the resulting epoxides. GLC on a Chiraldex G-TA (ASTEC) column was used to determine the enantiomeric composition of the products. The epoxides 2 first produced in incubations carried out in the presence of an NADPH regenerating system were not detected, being rapidly hydrolyzed by mEH to diols 3. The enantiomeric composition of the latter showed that no enantioface selection occurred in the epoxidation of 1c and 1d, and a very low (8%) ee of the (R)-epoxide was formed from 1b. Incubation of racemic epoxides 2b-d with the microsomal fraction showed that the mEH-catalyzed hydrolysis of 2c and 2d was practically nonenantioselective, while that of 2b exhibited a selectivity E = 4.9 favoring the hydrolysis of the (S)-enantiomer. A comparison of these results with those previously obtained for linear and branched chain alkyl monosubstituted oxiranes shows that the introduction of the second alkyl substituent suppresses the selectivity of the mEH reaction of the latter and reverses that of the former substrates.

摘要

已对α-甲基苯乙烯(1a)、2-甲基-1-己烯(1b)、2,4,4-三甲基-1-戊烯(1c)和1,3,3-三甲基-1-丁烯(1d)在兔肝微粒体中的生物转化进行了研究,目的是确定细胞色素P-450催化的双键环氧化反应的对映面选择性以及微粒体环氧化物水解酶(mEH)催化所得环氧化物水解反应的对映选择性。使用Chiraldex G-TA(ASTEC)柱上的气相色谱法测定产物的对映体组成。在存在NADPH再生系统的情况下进行孵育时首先产生的环氧化物2未被检测到,因为它们会迅速被mEH水解为二醇3。后者的对映体组成表明,在1c和1d的环氧化反应中未发生对映面选择,并且由1b形成的(R)-环氧化物的对映体过量(ee)非常低(8%)。将外消旋环氧化物2b-d与微粒体部分一起孵育表明,mEH催化的2c和2d的水解实际上是非对映选择性的,而2b的水解表现出选择性E = 4.9,有利于(S)-对映体的水解。将这些结果与先前获得的直链和支链烷基单取代环氧乙烷的结果进行比较表明,第二个烷基取代基的引入抑制了后者mEH反应的选择性,并使前者底物的选择性发生逆转。

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