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不同形式的细胞色素P450在人类肝脏微粒体中将前诱变剂6-氨基 Chrysene激活为遗传毒性代谢物中的作用。

Roles of different forms of cytochrome P450 in the activation of the promutagen 6-aminochrysene to genotoxic metabolites in human liver microsomes.

作者信息

Yamazaki H, Mimura M, Oda Y, Inui Y, Shiraga T, Iwasaki K, Guengerich F P, Shimada T

机构信息

Osaka Prefectural Institute of Public Health, Japan.

出版信息

Carcinogenesis. 1993 Jul;14(7):1271-8. doi: 10.1093/carcin/14.7.1271.

Abstract

We reported previously that the potent mutagen 6-aminochrysene is catalyzed principally by rat liver microsomal P4501A and P4502B enzymes to reactive metabolites that induce umu gene expression in O-acetyltransferase-over-expressing strain Salmonella typhimurium NM2009; the proposal was made that there are different mechanisms in the formation of reactive N-hydroxylated and diolepoxide metabolites by P450 enzymes (Yamazaki, H. and Shimada, T., Biochem. Pharmacol., 44, 913-920, 1992). Here we further examined the roles of human liver P450 enzymes and the mechanism of activation of 6-aminochrysene by rat and human P450 enzymes in the Salmonella tester strains. Liver microsomes from 18 different human samples catalyzed activation of 6-aminochrysene more efficiently in S. typhimurium NM2009 than in the original strain of S. typhimurium TA1535/pSK1002. The rates of 6-aminochrysene activation in 18 human liver samples showed good correlation to the contents of P4502B6 as well as contents of P4503A4 and the respective mono-oxygenase activities catalyzed by P4503A4. Among purified P450 enzymes examined, P4501A2 as well as P4503A4 were highly active in transforming 6-amino-chrysene to reactive metabolites, suggesting the involvement of different human P450 enzymes in the reaction. Four human samples that contained relatively high levels of particular P450 enzymes in their microsomes were selected and used for further characterization. Liver microsomes from human samples HL-13 and HL-4 that contained the highest levels of P4502B6 and P4503A4 respectively, were sensitive to the respective antibodies raised against monkey P4502B and human P4503A4; the activity in sample HL-16 having the highest level of P4501A2 was inhibited by anti-P4501A2 IgG. alpha-Naphthoflavone enhanced the activation of 6-aminochrysene very significantly in human liver microsomes enriched in P4503A4 and P4502B6 enzymes. Pentachlorophenol, an inhibitor of acetyltransferase activity, suppressed the activation of 6-aminochrysene in liver microsomes from phenobarbital-treated rats and from human samples HL-4, HL-13 and HL-18 but not HL-16. In contrast, 1,1,1-trichloropropane-2,3-oxide, an inhibitor of epoxide hydrolase activity, enhanced the activation of 6-aminochrysene catalyzed by liver microsomes from beta-naphthoflavone-treated rats and from human samples HL-16 but not HL-4, HL-13 and HL-18. Inclusion of purified rat epoxide hydrolase to the reconstituted system containing rat and human P4501A enzymes caused a decrease in the rates of 6-aminochrysene activation.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

我们之前报道过,强效诱变剂6-氨基屈主要由大鼠肝脏微粒体P4501A和P4502B酶催化生成反应性代谢产物,这些代谢产物可在过表达O-乙酰转移酶的鼠伤寒沙门氏菌NM2009菌株中诱导umu基因表达;有人提出,P450酶在生成反应性N-羟基化和双环氧化物代谢产物的过程中存在不同机制(山崎,H.和岛田,T.,《生物化学与药物学》,44,913 - 920,1992)。在此,我们进一步研究了人肝脏P450酶的作用以及大鼠和人P450酶在沙门氏菌测试菌株中激活6-氨基屈的机制。来自18个不同人类样本的肝脏微粒体在鼠伤寒沙门氏菌NM2009中催化6-氨基屈的激活比在鼠伤寒沙门氏菌TA1535/pSK1002原始菌株中更有效。18个人类肝脏样本中6-氨基屈的激活速率与P4502B6的含量以及P4503A4的含量和P4503A4催化的各自单加氧酶活性显示出良好的相关性。在所检测的纯化P450酶中,P4501A2以及P4503A4在将6-氨基屈转化为反应性代谢产物方面具有高活性,表明不同的人P450酶参与了该反应。选择了四个在其微粒体中含有相对高水平特定P450酶的人类样本用于进一步表征。来自人类样本HL - 13和HL - 4的肝脏微粒体分别含有最高水平的P4502B6和P4503A4,对分别针对猴P4502B和人P4503A4产生的相应抗体敏感;具有最高水平P4501A2的样本HL - 16中的活性被抗P4501A2 IgG抑制。α-萘黄酮在富含P4503A4和P4502B6酶的人肝脏微粒体中非常显著地增强了6-氨基屈的激活。五氯苯酚是乙酰转移酶活性的抑制剂,它抑制了苯巴比妥处理的大鼠以及人类样本HL - 4、HL - 13和HL - 18肝脏微粒体中6-氨基屈的激活,但不抑制HL - 16。相反,环氧水解酶活性的抑制剂1,1,1-三氯丙烷-2,3-氧化物增强了β-萘黄酮处理的大鼠以及人类样本HL - 16但不包括HL - 4、HL - 13和HL - 18肝脏微粒体催化的6-氨基屈的激活。在含有大鼠和人P4501A酶的重组系统中加入纯化的大鼠环氧水解酶导致6-氨基屈的激活速率降低。(摘要截选至400字)

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