Green T, Hathway D E
Chem Biol Interact. 1978 Sep;22(2-3):211-24. doi: 10.1016/0009-2797(78)90126-6.
9beta-D-2'-Deoxyribofuranosyl-imidazo-[2,1-i]purine ("etheno-deoxyadenosine") and 1beta-D-2'-deoxyribofuranosyl-1,2-dihydro-2-oxo-imidazo-[1,2-c]pyrimidine ("etheno-deoxycytidine") are identified in the enzyme hydrolysates obtained (i) from calf-thymus DNA which had been modified by chemical reaction with chloroacetaldehyde and (ii) from liver DNA prepared from rats which had been exposed orally to vinyl chloride in their drinking water (250 ppm) for approx. 2 years. Thus, vinyl chloride-derived chloroethylene oxide and/or chloroacetaldehyde behaves as a bifunctional alkylating agent towards deoxyadenosine and deoxycytidine residues of DNA. The separation of deoxyribonucleosides and the two etheno-deoxyribosyl-nucleosides by liquid chromatography, and the mass spectra of etheno-deoxyadenosine and etheno-deoxycytidine and of their O-bis-(trimethylsilyl) derivatives are described. In the animal experiment (ii), the resulting proportion of etheno-deoxyadenosine is small compared with that of etheno-deoxycytidine. Imidazo-[2,1-i]purine (etheno-adenine) is identified: (a) in the supernatant after sedimentation of the modified DNA in the model experiment (i), and (b) in the product resulting from the reaction between chloroacetaldehyde and deoxyadenosine. The effect on the structure of DNA of the imidazo-cyclization of deoxyadenosine and deoxycytidine residues and of the depurination of etheno-deoxyadenosine residues is discussed in relation to vinyl chloride oncogenicity.
在以下两种酶解产物中鉴定出了9β - D - 2'-脱氧呋喃核糖基 - 咪唑并[2,1 - i]嘌呤(“乙烯基脱氧腺苷”)和1β - D - 2'-脱氧呋喃核糖基 - 1,2 - 二氢 - 2 - 氧代 - 咪唑并[1,2 - c]嘧啶(“乙烯基脱氧胞苷”):(i)来自经氯乙醛化学反应修饰的小牛胸腺DNA;(ii)来自经口摄入饮用水中氯乙烯(250 ppm)约2年的大鼠肝脏DNA。因此,氯乙烯衍生的氯环氧乙烷和/或氯乙醛对DNA的脱氧腺苷和脱氧胞苷残基起双功能烷基化剂的作用。描述了通过液相色谱法分离脱氧核糖核苷和两种乙烯基脱氧核糖核苷,以及乙烯基脱氧腺苷和乙烯基脱氧胞苷及其O - 双(三甲基硅基)衍生物的质谱。在动物实验(ii)中,所得乙烯基脱氧腺苷的比例与乙烯基脱氧胞苷相比很小。鉴定出咪唑并[2,1 - i]嘌呤(乙烯基腺嘌呤):(a)在模型实验(i)中修饰DNA沉淀后的上清液中;(b)在氯乙醛与脱氧腺苷反应产生的产物中。结合氯乙烯致癌性,讨论了脱氧腺苷和脱氧胞苷残基的咪唑环化以及乙烯基脱氧腺苷残基的脱嘌呤对DNA结构的影响。