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人细胞色素P450对1-硝基芘的代谢

The metabolism of 1-nitropyrene by human cytochromes P450.

作者信息

Howard P C, Aoyama T, Bauer S L, Gelboin H V, Gonzalez F J

机构信息

Department of Environmental Health Sciences, School of Medicine, Case Western Reserve University, Cleveland, OH 44106.

出版信息

Carcinogenesis. 1990 Sep;11(9):1539-42. doi: 10.1093/carcin/11.9.1539.

Abstract

The metabolism of [3H]1-nitropyrene by specific forms of human cytochrome P450 was investigated in vitro using Vaccinia virus expression of P450 cDNAs in HepG2 cells. Cell lysates were injected individually with recombinant Vaccinia virus containing human P450 cDNA (P450 IA2, IIA3, IIB7, IIC8, IIC9, IID6, IIE1, IIF1, IIIA3, IIIA4, IIIA5 AND IVB1). Only IIIA3 and IIIA4 demonstrated significant activity in the C-oxidation of 1-nitropyrene. The principal metabolite from both P450 forms was 1-nitropyren-3-ol, produced in at least 4-fold greater abundance than the mixture of 1-nitropyren-6-ol and 1-nitropyren-8-ol, or the K-region dihydrodiols. This is in contrast to the metabolism in many species where 6-ol and 8-ol formation predominate over 3-ol formation. In fact, in rats and rabbits, P450 forms quite distinct from the IIIA P450s catalyze the majority of the metabolism of this pollutant. This is the first demonstration of the role of individual human P450 forms in the metabolism of a representative chemical in this important class of environmental pollutants. The importance of these observations in the overall carcinogenic risk of humans to these chemicals remains to be established. These studies furthermore establish a marked species difference in the metabolism of nitrated polycyclic aromatic hydrocarbons.

摘要

利用痘苗病毒在HepG2细胞中表达P450 cDNA,对人细胞色素P450特定形式对[3H]1-硝基芘的代谢进行了体外研究。将细胞裂解物分别注射含有人类P450 cDNA的重组痘苗病毒(P450 IA2、IIA3、IIB7、IIC8、IIC9、IID6、IIE1、IIF1、IIIA3、IIIA4、IIIA5和IVB1)。只有IIIA3和IIIA4在1-硝基芘的C-氧化中表现出显著活性。两种P450形式的主要代谢产物都是1-硝基芘-3-醇,其产生的丰度至少比1-硝基芘-6-醇和1-硝基芘-8-醇的混合物或K-区域二氢二醇高4倍。这与许多物种的代谢情况相反,在这些物种中,6-醇和8-醇的形成比3-醇的形成更为普遍。事实上,在大鼠和兔子中,与IIIA P450完全不同的P450形式催化了这种污染物的大部分代谢。这是首次证明个体人类P450形式在这类重要环境污染物中代表性化学物质代谢中的作用。这些观察结果对人类接触这些化学物质的总体致癌风险的重要性仍有待确定。此外,这些研究还确定了硝化多环芳烃代谢中存在明显的物种差异。

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