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细胞色素P-450的作用机制多样性及其生物学影响

The mechanistic plurality of cytochrome P-450 and its biological ramifications.

作者信息

Capdevila J, Saeki Y, Falck J R

出版信息

Xenobiotica. 1984 Jan-Feb;14(1-2):105-18. doi: 10.3109/00498258409151401.

Abstract

The mechanistic plurality of the microsomal cytochrome P-450 enzyme system is illustrated by studies of the oxidative metabolism of benzo[a]pyrene, 3-hydroxybenzo[a]pyrene and arachidonic acid. Rat liver microsomal metabolism of benzo[a]pyrene or 3-hydroxy-benzo[a]pyrene, supported by cumene hydroperoxide, generates benzo[a]pyrene quinones via molecular oxygen-dependent and -independent pathways. Arachidonic acid is metabolized by rat liver microsomal fractions to a variety of oxygenated products, including cis-trans diene conjugated monohydroxy-acids, epoxy-acids as well as omega- and omega-1-oxidation products. The chemistry of the different reaction products is discussed in terms of the possible mechanisms responsible for their formation and the role of the haemoprotein during catalysis. An integrated view for the reaction cycle of cytochrome P-450 is presented.

摘要

通过对苯并[a]芘、3-羟基苯并[a]芘和花生四烯酸氧化代谢的研究,阐明了微粒体细胞色素P-450酶系统机制的多样性。异丙苯过氧化氢支持下的大鼠肝脏微粒体对苯并[a]芘或3-羟基苯并[a]芘的代谢,通过分子氧依赖和非依赖途径生成苯并[a]芘醌。花生四烯酸被大鼠肝脏微粒体部分代谢为多种氧化产物,包括顺反二烯共轭单羟基酸、环氧酸以及ω-和ω-1氧化产物。根据可能导致其形成的机制以及血红蛋白在催化过程中的作用,讨论了不同反应产物的化学性质。提出了细胞色素P-450反应循环的综合观点。

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