BINDING OF BENZO[A]PYRENE TO DNA BY CYTOCHROME-P-450 CATALYZED ONE-ELECTRON OXIDATION IN RAT-LIVER MICROSOMES AND NUCLEI

被引:84
作者
CAVALIERI, EL
ROGAN, EG
DEVANESAN, PD
CREMONESI, P
CERNY, RL
GROSS, ML
BODELL, WJ
机构
[1] UNIV NEBRASKA, MIDWEST CTR MASS SPECT, DEPT CHEM, LINCOLN, NE 68588 USA
[2] UNIV CALIF SAN FRANCISCO, SCH MED, BRAIN TUMOR RES CTR, SAN FRANCISCO, CA 94143 USA
[3] UNIV CALIF SAN FRANCISCO, SCH MED, DEPT NEUROL SURG, SAN FRANCISCO, CA 94143 USA
关键词
D O I
10.1021/bi00472a011
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
To investigate whether cytochrome P-450 catalyzes the covalent binding of substrates to DNA by one-electron oxidation, the ability of both uninduced and 3-methylcholanthrene (MC) induced rat liver microsomes and nuclei to catalyze covalent binding of benzo[a]pyrene (BP) to DNA and formation of the labile adduct 7-(benzo[a]pyren-6-yl)guanine (BP-N7Gua) was investigated. This adduct arises from the reaction of the BP radical cation at C-6 with the nucleophilic N-7 of the guanine moiety. In the various systems studied, 1–9 times more BP-N7Gua adduct was isolated than the total amount of stable BP adducts in the DNA. The specific cytochrome P-450 inhibitor 2-[(4,6-dichloro-o-biphenyl)oxy]ethylamine hydrobromide (DPEA) reduced or eliminated BP metabolism, binding of BP to DNA, and formation of BP-N7Gua by cytochrome P-450 in both microsomes and nuclei. The effects of the antioxidants cysteine, glutathione, and p-methoxythiophenol were also investigated. Although cysteine had no effect on the microsome-catalyzed processes, glutathione and p-methoxythiophenol inhibited BP metabolism, binding of BP to DNA, and formation of BP-N7Gua by cytochrome P-450 in both microsomes and nuclei. The decreased levels of binding of BP to DNA in the presence of glutathione or p-methoxythiophenol are matched by decreased amounts of BP-N7Gua adduct and of stable BP-DNA adducts detected by the 32P-postlabeling technique. This study represents the first demonstration of cytochrome P-450 mediating covalent binding of substrates to DNA via one-electron oxidation and suggests that this enzyme can catalyze peroxidase-type electron-transfer reactions. © 1990, American Chemical Society. All rights reserved.
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页码:4820 / 4827
页数:8
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