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苯烷基胺代谢过程中细胞色素P - 455 nm复合物的形成。十二、大鼠肝脏微粒体和重组细胞色素P - 450系统中的对映选择性和温度依赖性

Cytochrome P-455 nm complex formation in the metabolism of phenylalkylamines. XII. Enantioselectivity and temperature dependence in microsomes and reconstituted cytochrome P-450 systems from rat liver.

作者信息

Jönsson K H, Lindeke B

机构信息

Department of Organic Pharmaceutical Chemistry, Uppsala University, Sweden.

出版信息

Chirality. 1992;4(8):469-77. doi: 10.1002/chir.530040803.

Abstract

Formation of metabolic intermediate (MI) complexes was studied with the enantiomers of amphetamine, 1-phenyl-2-pentanamine, N-hydroxyamphetamine, and 2-nitroso-1-phenylpropane (the C-nitroso analogue of amphetamine). Three different enzyme systems were used; liver microsomes from phenobarbital pretreated rats and two reconstituted systems containing the P450 2B1 and P450 2C11 forms of cytochrome P-450. Enantioselective complex formation in microsomes was shown for the amines and the nitroso compound, but not for the hydroxylamine. The highly purified P450 2B1 system formed the MI complex with all substrates tested, and the enantioselectivity observed with the microsomal system was reproduced. In the P450 2C11 system the nitroso compounds were completely inactive, whereas the enantiomers of N-hydroxyamphetamine still produced the complex at a high rate. Changes in temperature were shown to affect (R)-2-nitroso-1-phenylpropane more than its enantiomer. Both enantiomers showed biphasic Arrhenius plots for MI complex formation in microsomes (breaks around 22 degrees C), but the activation energies of the (R)-isomer were about five times higher than those of the (S)-isomer. A theory is presented which suggests different modes of interaction with the active site of P-450 to account for the different behaviour of the various substrates.

摘要

研究了苯丙胺、1-苯基-2-戊胺、N-羟基苯丙胺和2-亚硝基-1-苯丙烷(苯丙胺的C-亚硝基类似物)对映体形成代谢中间体(MI)复合物的情况。使用了三种不同的酶系统:苯巴比妥预处理大鼠的肝微粒体以及两种含有细胞色素P-450的P450 2B1和P450 2C11形式的重组系统。微粒体中胺类和亚硝基化合物表现出对映选择性复合物形成,但羟胺未表现出。高度纯化的P450 2B1系统与所有测试底物形成MI复合物,并重现了微粒体系统中观察到的对映选择性。在P450 2C11系统中,亚硝基化合物完全无活性,而N-羟基苯丙胺的对映体仍以高速率产生复合物。结果表明,温度变化对(R)-2-亚硝基-1-苯丙烷的影响大于其对映体。两种对映体在微粒体中形成MI复合物的阿伦尼乌斯图均呈双相(在22℃左右有断点),但(R)-异构体的活化能约为(S)-异构体的五倍。提出了一种理论,该理论表明与P-450活性位点的相互作用模式不同,以解释各种底物的不同行为。

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