萘醌对培养中微粒体代谢和化学致癌的抑制作用。

S Nesnow, H Bergman, H Garland, M Morris
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引用次数: 0

摘要

在用3-甲基胆蒽(3-Mc)或苯巴比妥(PB)预处理的大鼠肝微粒体中,研究了萘二醇、醌和相关化合物抑制混合功能氧化酶的能力。用苯并(a)芘单加氧酶作为测定混合功能氧化酶活性的指标,发现菲- 9,10 -醌是活性最高的化合物,K1 = 0.79 microM。在3-MC和pb诱导的微粒体中,菲9,10 -醌不影响细胞色素c还原酶,但对氨基吡啶n -去甲基化酶和对硝基苯甲酚- o -去甲基化酶有抑制作用,抑制常数几乎相同。1,2-萘醌对细胞色素c还原酶、氨基吡啶n -去甲基化酶和对硝基苯甲醚- o -去甲基化酶的影响与菲-9,10-醌相似。两种醌均刺激了NADPH氧化酶的活性,但这种刺激的程度并不能解释它们对微粒体氧化的抑制。用苯并(a)芘单加氧酶与菲- 9,10 -醌和1,2-萘醌的动力学研究表明,它们与苯并(a)芘无竞争性,与NADPH混合无竞争性。这两种醌在培养的C3H10T1/2CL8细胞中以剂量反应的方式抑制苯并(a)芘诱导的致癌转化,可能是通过抑制激活苯并(a)芘的细胞微粒体酶。菲- 9,10 -醌和1,2-萘醌似乎通过细胞色素P-450水平的相互作用抑制微粒体氧化过程,可能与细胞色素P-450-底物-氧络合物相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inhibition of microsomal metabolism and chemical oncogenesis in culture by naphthalene quinones.

A series of naphthalene diols, quinones, and related compounds were examined for their ability to inhibit mixed-function oxidase in liver microsomes obtained from rats which had been pretreated with 3-methylcholanthrene (3-Mc) or phenobarbital (PB). Using benzo(a)pyrene monooxygenase as a measure of mixed-function oxidase activity, it was found that phenanthrene-9, 10-quinone was the most active compound tested with a K1 = 0.79 microM. Phenanthrene-9, 10-quinone did not affect cytochrome c reductase but did inhibit aminopyrine N-demethylase and p-nitroanisole-O-demethylase in both 3-MC and PB-induced microsome with almost identical inhibition constants. 1,2-Naphthoquinone exerted similar effects as phenanthrene-9,10-quinone on cytochrome c reductase, aminopyrine N-demethylase and p-nitroanisole-O-demethylase. Both quinones stimulated NADPH oxidase activity but the extent of this stimulation did not explain their inhibition of microsomal oxidation. Kinetic studies using benzo(a)-pyrene monooxygenase with phenanthrene-9, 10-quinone and 1,2-naphthoquinone indicated that they were noncompetitive with benzo(a)pyrene and mixed noncompetitive with NADPH. Both of these quinones inhibited benzo(a)pyrene induced oncogenic transformation in C3H10T1/2CL8 cells in culture in a dose response manner, presumably by inhibition of the cellular microsomal enzyme which activate benzo(a)pyrene. Phenanthrene-9, 10-quinone and 1,2-naphthoquinone seem to inhibit microsomal oxidative processes by interaction at the level of cytochrome P-450 possibly with a cytochrome P-450-substrate-oxygen complex.

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