METABOLIC OXIDATION OF CARCINOGENIC ARYLAMINES BY RAT, DOG, AND HUMAN HEPATIC MICROSOMES AND BY PURIFIED FLAVIN-CONTAINING AND CYTOCHROME-P-450 MONOOXYGENASES
- 1 January 1985
- journal article
- research article
- Vol. 45 (8) , 3578-3585
Abstract
Hepatic N-oxidation and aryl ring oxidation are generally regarded as critical activation and detoxification pathways for arylamine carcinogenesis. In this study, we examined the in vitro hepatic metabolism of the carcinogens, 2-aminofluorene (2-AF) and 2-naphthylamine (2-NA), and the suspected carcinogen, 1-naphthylamine (1-NA), using high-pressure liquid chromatography. Hepatic microsomes from rats, dogs and humans were shown to catalyze the N-oxidation of 2-AF and of 2-NA, but not of 1-NA; and the rates of 2-AF N-oxidation were 2- to 3-fold greater than the rates pf 2-NA N-oxidation. In each species, rates of 1-hydroxylation of 2-NA and 2-hydroxylation of 1-NA were comparable and were 2- to 5-fold greater than 6-hydroxylation of 2-NA or 5- and 7-hydroxylation of 2-AF. Purified rat hepatic monooxygenases, cytochromes P-450UT-A, P-450UT-H, P-450PB-B, P-450PB-D, P-450BNF-B and P-450ISF/BNF-G but not P-450PB-C or P-450PB/PCN-E, catalyzed several ring oxidations as well as the N-oxidation of 2-AF. Cytochromes P-450PB-B, P-450BNF-B, and P-450ISF/BNF-G were most active; however, only cytochrome P-450ISF/BNF-G, the isosafrole-induced isozyme, catalyzed the N-oxidation of 2-NA. The purified porcine hepatic flavin-containing monooxygenase, which was known to carry out the N-oxidation of 2-AF, catalyzed only ring oxidation of 1-NA and 2-NA. No activity for 1-NA N-oxidation was found with any of the purified enzymes. 1-NA is probably not carcinogenic. Furthermore, carcinogenic arylamines appear to be metabolized similarly in humans and experimental animals and perhaps selectively by a specific form of hepatic cytochrome P-450. Enzyme mechanisms accounting for the observed product distributions were evaluated by Huckel molecular orbital calulations on neutral, free radical, and cation intermediates. A reaction pathway is proposed that involves 2 consecutive 1 electron oxidations to form a paired substrate cation-enzyme hydroxyl anion intermediate that collapses to ring and N-hydroxy products.This publication has 42 references indexed in Scilit:
- The liver microsomal FAD-containing monooxygenase. Spectral characterization and kinetic studies.Published by Elsevier ,2021
- Chemical Studies on Tobacco Smoke LXIV. On the Analysis of Aromatic Amines in Cigarette Smoke*Journal of Analytical Toxicology, 1979
- Metabolic oxidation of nicotine to chemically reactive intermediatesJournal of Medicinal Chemistry, 1979
- Coupling of spin, substrate, and redox equilibriums in cytochrome P450Biochemistry, 1976
- Some properties of a detergent-solubilized NADPH-cytochrome c(cytochrome P-450) reductase purified by biospecific affinity chromatography.Journal of Biological Chemistry, 1976
- Mechanism of 2-Naphthylamine Oxidation Catalysed by Pig Liver MicrosomesXenobiotica, 1976
- ENZYMATIC REDUCTION OF N-HYDROXY DERIVATIVES OF 2-ACETYLAMINOFLUORENE AND RELATED CARCINOGENS BY TISSUE PREPARATIONS1965
- The Carbon Monoxide-binding Pigment of Liver MicrosomesJournal of Biological Chemistry, 1964
- HEPATOCARCINOGENESIS BY 2-ACETYLAMINOFLUORENE AND RELATED COMPOUNDS INCLUDING COMMENTS ON DIETARY AND OTHER INFLUENCES1955
- DETERMINATION OF SERUM PROTEINS BY MEANS OF THE BIURET REACTIONJournal of Biological Chemistry, 1949