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小鼠中香豆素羟化酶活性的遗传调控。来自两个近交系及其F1杂种的该酶的生化特性。

Genetic regulation of coumarin hydroxylase activity in mice. Biochemical characterization of the enzyme from two inbred strains and their F1 hybrid.

作者信息

Wood A W

出版信息

J Biol Chem. 1979 Jul 10;254(13):5641-6.

PMID:447674
Abstract

Hydroxylation of coumarin to 7-hydroxycoumarin by liver microsomes from control or phenobarbital-pretreated mice is 5- to 10-fold higher in the DBA/2J strain compared to the AKR/J strain, while activities of nine other cytochrome P-450 mediated oxidations show only minor differences. Mixing experiments with whole liver homogenates and subcellular fractionations do not reveal the presence of enzyme activators or inhibitors or competing enzyme reactions in either strain. Comparisons of pH optima (pH 7.6), heat stability at 52 degrees C (6 to 8 min for 50% inactivation), and Km values (0.45 to 0.50 microM coumarin) for coumarin hydroxylase show no significant differences in the two strains of mice or their F1 hybrid. Similarly, only minor differences in inhibition of coumarin hydroxylase by carbon monoxide, SKF-525A, menadione, and several other inhibitors of microsomal mixed function oxidase reactions are observed in the two strains. In contrast to these data, aniline and metyrapone, two compounds which bind to the heme iron of cytochrome P-450 to form ferrihemochromes, show differential and opposite patterns of inhibition of enzyme activity in the DBA/2J and AKR/J mouse strains. This latter observation suggests that a structurally different cytochrome P-450 may hydroxylate coumarin in these two inbred mouse strains.

摘要

与AKR/J品系相比,来自对照或苯巴比妥预处理小鼠的肝微粒体将香豆素羟基化为7-羟基香豆素的能力在DBA/2J品系中要高5至10倍,而其他九种细胞色素P-450介导的氧化反应活性仅显示出微小差异。用全肝匀浆进行的混合实验以及亚细胞分级分离实验均未揭示这两个品系中存在酶激活剂、抑制剂或竞争性酶反应。对香豆素羟化酶的最适pH(pH 7.6)、52℃下的热稳定性(50%失活需6至8分钟)以及Km值(0.45至0.50微摩尔香豆素)进行比较,结果表明这两种品系的小鼠及其F1杂种之间没有显著差异。同样,在这两个品系中,一氧化碳、SKF-525A、甲萘醌以及其他几种微粒体混合功能氧化酶反应抑制剂对香豆素羟化酶的抑制作用仅存在微小差异。与这些数据形成对比的是,苯胺和甲吡酮这两种与细胞色素P-450的血红素铁结合形成高铁血红素的化合物,在DBA/2J和AKR/J小鼠品系中对酶活性的抑制呈现出不同且相反的模式。后一观察结果表明,在这两个近交小鼠品系中,可能存在结构不同的细胞色素P-450使香豆素羟基化。

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