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Hydrogen peroxide formation and stoichiometry of hydroxylation reactions catalyzed by highly purified liver microsomal cytochrome P-450

机译:高氧化肝微粒体细胞色素P-450催化的氢氧化反应的过氧化氢形成和化学计量

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摘要

The stoichiometry of hydroxylation reactions catalyzed by cytochrome P-450 was studied in a reconstituted enzyme system containing the highly purified cytochrome from phenobarbital-induced rabbit liver microsomes. Hydrogen peroxide was shown to be formed in the reconstituted system in the presence of NADPH and oxygen; the amount of peroxide produced varied with the substrated added. NADPH oxidation, oxygen consumption, and total product formation (sum of hydroxylated compound and hydrogen peroxide) were shown to be equimolar when cyclohexane, benzphetamine, or dimethylaniline served as the substrate. The stoichiometry observed represents the sum of two activities associated with cytochrome P-450. These are (1) hydroxylase activity: NADPH + H+ + O2 + RH -- NADP+ + H2O + ROH; and (2) oxidase activity: NADPH + H+ + O2 -- NADP+ + H2O2. Benzylamphetamine (desmethylbenzphetamine) acts as a pseudosubstrate in that it stimulates peroxide formation to the same extent as the parent compound (benzphetamine), but does not undergo hydroxylation. Accordingly, when benzylamphetamine alone is added in control experiments to correct for the NADPH and O2 consumption not associated with benzphetamine hydroxylation, the expected 1:1:1 stoichiometry for NADPH oxidation, O2 consumption, and formaldehyde formation in the hydroxylation reaction is observed.
机译:在含有苯巴罗伯伯诱导的兔肝微粒体的高度纯化细胞色素的重构酶体系中研究了细胞色素P-450催化的羟基化反应的化学计量。显示过氧化氢在NADPH和氧存在下在重构系统中形成;产生的过氧化氧化物的量随添加的碱基而变化。 NADPH氧化,氧气消耗和总产形成(羟基化化合物和过氧化氢的总和)显示在环己烷,苯丙胺或二甲基苯胺作为基质时等摩尔。观察到的化学计量代表了与细胞色素P-450相关的两种活性的总和。这些是(1)羟化酶活性:NADPH + H + + O 2 + RH - > NADP ++ H2O + ROH; (2)氧化酶活性:NADPH + H + + O 2 - > NADP ++ H2O2。苄基苯丙胺(Desmethylbenzphentamine)用作假石,因为它刺激过氧化物形成在与母体化合物(苯丙胺)相同的程度上,但不经历羟基化。因此,当单独添加单独的苄基丙嘧啶以校正与苯丙胺羟基化无关的NADPH和O 2消耗时,观察到NADPH氧化,O2消耗和在羟基化反应中形成的预期1:1:1化学计量计量。

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