Literature DB >> 15720131

Reactions of benzene oxide with thiols including glutathione.

Alistair P Henderson1, Martine L Barnes, Christine Bleasdale, Richard Cameron, William Clegg, Sarah L Heath, Andrew B Lindstrom, Stephen M Rappaport, Suramya Waidyanatha, William P Watson, Bernard T Golding.   

Abstract

S-Phenylmercapturic acid is a minor metabolite of benzene used as a biomarker for human benzene exposures. The reaction of intracellular glutathione with benzene oxide-oxepin, the initial metabolite of benzene, is presumed to give 1-(S-glutathionyl)-cyclohexa-3,5-dien-2-ol, which undergoes dehydration to S-phenylglutathione, the precursor of S-phenylmercapturic acid. To validate the proposed route to S-phenylglutathione, reactions of benzene oxide-oxepin with glutathione and other sulfur nucleophiles have been studied. The reaction of benzene oxide with an excess of aqueous sodium sulfide, followed by acetylation, gave bis-(6-trans-5-acetoxycyclohexa-1,3-dienyl)sulfide, the structure of which was proved by X-ray crystallography. Reactions of benzene oxide-oxepin in a 95:5 (v/v) mixture of phosphate buffer in D2O with (CD3)2SO were monitored by 1H NMR spectroscopy. In the absence of glutathione, the half-life of benzene oxide-oxepin was ca. 34 min at 25 degrees C and pD 7.0. The half-life was not affected in the range of 2-15 mM glutathione in the presence and absence of a commercial sample of human glutathione S-transferase (at pH 7.0, 8.0, 8.5, or 10.0). The adduct 1-(S-glutathionyl)-cyclohexa-3,5-diene-2-ol was identified in these reaction mixtures, especially at higher pH, by mass spectrometry and by its acid-catalyzed decomposition to S-phenylglutathione. Incubation of benzene oxide with N-acetyl-L-cysteine at 37 degrees C and pH 10.0 and subsequent mass spectrometric analysis of the mixture showed formation of pre-S-phenylmercapturic acid and the dehydration product, S-phenylmercapturic acid. The data validate the premise that benzene oxide-oxepin can be captured by glutathione to give (1R,2R)- and/or (1S,2S)-1-(S-glutathionyl)-cyclohexa-3,5-dien-2-ol, which dehydrate to S-phenylglutathione. The capture is a relatively inefficient process at pH 7 that is accelerated at higher pH. These studies account for the observation that the metabolism of benzene is dominated by the formation of phenol. The pathway leading to S-phenylmercapturic acid is necessarily minor on account of the low efficiency of benzene oxide capture by glutathione at pH 7 vs spontaneous rearrangement to phenol.

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Year:  2005        PMID: 15720131     DOI: 10.1021/tx049781y

Source DB:  PubMed          Journal:  Chem Res Toxicol        ISSN: 0893-228X            Impact factor:   3.739


  6 in total

1.  Analysis of the benzene oxide-DNA adduct 7-phenylguanine by liquid chromatography-nanoelectrospray ionization-high resolution tandem mass spectrometry-parallel reaction monitoring: application to DNA from exposed mice and humans.

Authors:  Adam T Zarth; Guang Cheng; Zhaobin Zhang; Mingyao Wang; Peter W Villalta; Silvia Balbo; Stephen S Hecht
Journal:  Chem Biol Interact       Date:  2014-03-13       Impact factor: 5.192

2.  Urinary levels of volatile organic carcinogen and toxicant biomarkers in relation to lung cancer development in smokers.

Authors:  Jian-Min Yuan; Yu-Tang Gao; Renwei Wang; Menglan Chen; Steven G Carmella; Stephen S Hecht
Journal:  Carcinogenesis       Date:  2012-01-31       Impact factor: 4.944

3.  Effects of smoking cessation on eight urinary tobacco carcinogen and toxicant biomarkers.

Authors:  Steven G Carmella; Menglan Chen; Shaomei Han; Anna Briggs; Joni Jensen; Dorothy K Hatsukami; Stephen S Hecht
Journal:  Chem Res Toxicol       Date:  2009-04       Impact factor: 3.739

4.  Benzene oxide is a substrate for glutathione S-transferases.

Authors:  Adam T Zarth; Sharon E Murphy; Stephen S Hecht
Journal:  Chem Biol Interact       Date:  2015-11-07       Impact factor: 5.192

5.  The fate of benzene-oxide.

Authors:  Terrence J Monks; Michael Butterworth; Serrine S Lau
Journal:  Chem Biol Interact       Date:  2009-12-29       Impact factor: 5.192

6.  Cytochrome P450 Can Epoxidize an Oxepin to a Reactive 2,3-Epoxyoxepin Intermediate: Potential Insights into Metabolic Ring-Opening of Benzene.

Authors:  Holly M Weaver-Guevara; Ryan W Fitzgerald; Noah A Cote; Arthur Greenberg
Journal:  Molecules       Date:  2020-10-03       Impact factor: 4.411

  6 in total

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