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氨基甲酸乙烯酯在小鼠肺中的氧化及1,N6-乙烯基脱氧腺苷的形成。

Oxidation of vinyl carbamate and formation of 1,N6-ethenodeoxyadenosine in murine lung.

作者信息

Forkert Poh-Gek, Kaufmann Martin, Black Gordon, Bowers Raymond, Chen Heidi, Collins Kathy, Sharma Ashish, Jones Glenville

机构信息

Department of Anatomy and Cell Biology, Queen's University, Kingston, Ontario, Canada K7L 3N6.

出版信息

Drug Metab Dispos. 2007 May;35(5):713-20. doi: 10.1124/dmd.106.013805. Epub 2007 Feb 12.

Abstract

Vinyl carbamate (VC) is derived from ethyl carbamate, a carcinogen formed in fermentation of food and alcoholic products. We have undertaken studies to test the hypothesis that an epoxide generated from VC oxidation leads to formation of 1,N6-ethenodeoxyadenosine (epsilon dAS). We have developed approaches using liquid chromatography-mass spectrometry and liquid chromatography-tandem mass spectrometry for identification and quantitation of epsilon dAS. Scanning and fragment ion analyses confirmed the identity of epsilon dAS based on the molecular ion [M + H]+ m/z 276 and the specific fragment ion m/z 160. Chemical oxidation of VC in reactions containing 2'-deoxyadenosine produced epsilon dAS with 1H NMR, chromatographic, and mass spectral characteristics identical to those of the authentic epsilon dAS, suggesting DNA alkylation by the VC epoxide. Subsequent studies evaluated formation of epsilon dAS in incubations of murine lung microsomes or recombinant CYP2E1 with VC. The formation of epsilon dAS in incubations of lung microsomes or recombinant CYP2E1 with VC was dependent on protein concentrations, CYP2E1 enzyme levels, and incubation time. The rates of epsilon dAS formation were highly correlated with VC concentrations. Peak rates were produced by lung microsomes and recombinant CYP2E1 at 3.0 and 2.5 mM VC, respectively. In inhibitory studies, incubations of VC were performed using lung microsomes from mice treated with the CYP2E1 inhibitor diallyl sulfone (100 mg/kg, p.o.). Results from these studies showed significantly decreased epsilon dAS formation in microsomes incubated with VC, with an inhibition of 70% at 3.0 mM. These findings suggested that CYP2E1 is a major enzyme mediating VC oxidation, leading to the formation of a metabolite that alkylates DNA to form the epsilon dAS adduct.

摘要

氨基甲酸乙烯酯(VC)由氨基甲酸乙酯衍生而来,氨基甲酸乙酯是一种在食品和酒精产品发酵过程中形成的致癌物。我们开展了研究,以验证由VC氧化生成的环氧化物会导致1,N6 - 乙烯基脱氧腺苷(εdAS)形成这一假说。我们开发了利用液相色谱 - 质谱联用和液相色谱 - 串联质谱联用技术来鉴定和定量εdAS的方法。扫描和碎片离子分析基于分子离子[M + H]+ m/z 276和特定碎片离子m/z 160确认了εdAS的身份。在含有2'-脱氧腺苷的反应中,VC的化学氧化产生了εdAS,其1H NMR、色谱和质谱特征与 authentic εdAS相同,表明VC环氧化物可使DNA烷基化。后续研究评估了在鼠肺微粒体或重组CYP2E1与VC的孵育过程中εdAS的形成情况。肺微粒体或重组CYP2E1与VC孵育时εdAS的形成取决于蛋白质浓度、CYP2E1酶水平和孵育时间。εdAS的形成速率与VC浓度高度相关。肺微粒体和重组CYP2E1分别在3.0 mM和2.5 mM VC时产生峰值速率。在抑制研究中,使用经CYP2E1抑制剂二烯丙基砜(100 mg/kg,口服)处理的小鼠的肺微粒体进行VC孵育。这些研究结果表明,与VC孵育的微粒体中εdAS的形成显著减少,在3.0 mM时抑制率为70%。这些发现表明CYP2E1是介导VC氧化的主要酶,导致形成一种可使DNA烷基化以形成εdAS加合物的代谢物。

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