Literature DB >> 7147997

The metabolism of 1,3-cyclohexadiene by liver microsomal mono-oxygenase.

P G Gervasi, L Citti, G Turchi, G Bellucci, G Berti, E Mastrorilli, M P Tortello.   

Abstract

1. 1,3-Cyclohexadiene exhibits type I binding spectra with microsomal cytochrome P-450 of either untreated, or phenobarbital- or 3-methylcholanthrene-treated mice. In all cases, two values of Ks can be measured, indicating a different affinity of 1,3-cyclohexadiene towards the cytochrome P-450 species. 2. Mouse-liver microsomal mono-oxygenase metabolizes 1,3-cyclohexadiene to the corresponding mono-epoxide, which is rapidly hydrolysed to trans-3-cyclohexene-1,2-diol and trans-2-cyclohexene-1,4-diol. This hydrolysis was proved to be essentially nonenzymic. 3. A simple gas-chromatographic method was used to quantify the diols and to determine the kinetic constants (Km and Vmax) of 1,3-cyclohexadiene mono-epoxidase. 4. Epoxide formation, as determined by diol production from 1,3-cyclohexadiene metabolism, was NADPH- and O2-dependent and was inhibited by CO and SKF-525A.

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Year:  1982        PMID: 7147997     DOI: 10.3109/00498258209038930

Source DB:  PubMed          Journal:  Xenobiotica        ISSN: 0049-8254            Impact factor:   1.908


  3 in total

1.  In vitro biotransformation of 2-methylpropene (isobutene): epoxide formation in mice liver.

Authors:  M Cornet; W Sonck; A Callaerts; G Csanády; A Vercruysse; R J Laib; V Rogiers
Journal:  Arch Toxicol       Date:  1991       Impact factor: 5.153

2.  Dinemorphan N-demethylation by mouse liver microsomes.

Authors:  P G Gervasi; D Benetti; L Citti; M Del Monte; G Turchi
Journal:  Experientia       Date:  1984-02-15

3.  Metabolism and mutagenicity of isoprene.

Authors:  P G Gervasi; V Longo
Journal:  Environ Health Perspect       Date:  1990-06       Impact factor: 9.031

  3 in total

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