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N-亚硝基二甲胺代谢活化为中国仓鼠V79细胞诱变剂过程中的酶特异性。

Enzyme specificity in the metabolic activation of N-nitrosodimethylamine to a mutagen for Chinese hamster V79 cells.

作者信息

Yoo J S, Yang C S

出版信息

Cancer Res. 1985 Nov;45(11 Pt 1):5569-74.

PMID:4053031
Abstract

In order to elucidate the mechanism of the metabolic activation of N-nitrosodimethylamine (NDMA), the relationship between NDMA demethylase (NDMAd) and NDMA mutagenicity in Chinese hamster V79 cells was investigated. The microsome-mediated activation system produced NDMA mutagenicity similar to the S9-mediated activation system, suggesting that microsomes are solely responsible for the activation process. Pretreatment of rats with ethanol- or acetone-induced microsomal NDMAd activity, and such treatment also enhanced microsome-mediated NDMA mutagenicity 6-7-fold. The patterns of NDMA activation by ethanol- and acetone-induced microsomes differed distinctly from that by phenobarbital-induced microsomes for both NDMAd and the mutagenicity. The former type of microsomes had a low Km for NDMA, but the latter appeared to have very high Km values, and NDMAd was highly positively related to NDMA mutagenicity. Purified cytochrome P-450 isozymes from acetone- and phenobarbital-induced microsomes, P-450ac and P-450b, respectively, were effective for the activation of NDMA to a mutagen in a reconstituted monooxygenase system. In parallel fashion to NDMAd activity, P-450ac was effective at low substrate concentrations, whereas P-450b exhibited appreciable activity only at high NDMA concentrations. The results demonstrate clearly that NDMAd, which is effectively catalyzed by a specific P-450 isozyme inducible by compounds such as ethanol, acetone, and isopropanol, is primarily responsible for the activation of NDMA to a mutagen.

摘要

为阐明N-亚硝基二甲胺(NDMA)代谢活化的机制,研究了中国仓鼠V79细胞中NDMA脱甲基酶(NDMAd)与NDMA致突变性之间的关系。微粒体介导的活化系统产生的NDMA致突变性与S9介导的活化系统相似,表明微粒体是活化过程的唯一责任者。用乙醇或丙酮诱导大鼠微粒体NDMAd活性进行预处理,这种处理也使微粒体介导的NDMA致突变性增强了6至7倍。乙醇和丙酮诱导微粒体对NDMA的活化模式在NDMAd和致突变性方面与苯巴比妥诱导微粒体的活化模式明显不同。前一种类型的微粒体对NDMA的Km值较低,但后一种似乎具有非常高的Km值,并且NDMAd与NDMA致突变性高度正相关。分别从丙酮和苯巴比妥诱导的微粒体中纯化的细胞色素P-450同工酶P-450ac和P-450b在重组单加氧酶系统中对将NDMA活化为诱变剂是有效的。与NDMAd活性平行,P-450ac在低底物浓度下有效,而P-450b仅在高NDMA浓度下表现出明显活性。结果清楚地表明,NDMAd主要负责将NDMA活化为诱变剂,它由乙醇、丙酮和异丙醇等化合物诱导的特定P-450同工酶有效催化。

相似文献

1
Enzyme specificity in the metabolic activation of N-nitrosodimethylamine to a mutagen for Chinese hamster V79 cells.N-亚硝基二甲胺代谢活化为中国仓鼠V79细胞诱变剂过程中的酶特异性。
Cancer Res. 1985 Nov;45(11 Pt 1):5569-74.
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Hepatic microsomal metabolism of indole to indoxyl, a precursor of indoxyl sulfate.肝脏微粒体将吲哚代谢为吲哚酚,吲哚酚是硫酸吲哚酚的前体。
Eur J Drug Metab Pharmacokinet. 2001 Oct-Dec;26(4):235-40. doi: 10.1007/BF03226377.
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Cytochrome P-450 isozyme pattern is related to individual susceptibility to diethylnitrosamine-induced liver cancer in rats.
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