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亚硝基脲类的作用机制——V. O6-(2-氟乙基)鸟嘌呤的形成及其在脱氧核糖核酸交联中的可能作用

Mechanism of action of the nitrosoureas--V. Formation of O6-(2-fluoroethyl)guanine and its probable role in the crosslinking of deoxyribonucleic acid.

作者信息

Tong W P, Kirk M C, Ludlum D B

出版信息

Biochem Pharmacol. 1983 Jul 1;32(13):2011-5. doi: 10.1016/0006-2952(83)90420-3.

Abstract

DNA which has been exposed to 2-haloethylnitrosoureas has been shown to contain the chemical crosslink 1-(N3-deoxycytidyl), 2-(N1-deoxyguanosinyl)-ethane [W. P. Tong, M. C. Kirk and D. B. Ludlum, Cancer Res. 43, 3102 (1982)]. We have hypothesized that this structure is formed by an initial attack of a 2-haloethyl group on the 6 position of guanine followed by an intramolecular rearrangement and secondary crosslinking reaction with cytosine. We have now shown that DNA which had been reacted with N-(2-fluoroethyl)-N'-cyclohexyl-N-nitrosourea contained O6-(2-fluoroethyl)guanine and have thus demonstrated that the first step in the proposed mechanism occurs. Furthermore, O6-(2-fluoroethyl)guanosine hydrolyzed to N1-(2-hydroxyethyl)guanosine, showing that the necessary intramolecular rearrangement occurs. These two observations greatly strengthen the proposed route to DNA crosslinking by the 2-haloethylnitrosoureas.

摘要

业已表明,暴露于2-卤代乙基亚硝基脲的DNA含有化学交联物1-(N3-脱氧胞苷基)-2-(N1-脱氧鸟苷基)乙烷[W.P. Tong、M.C. Kirk和D.B. Ludlum,《癌症研究》43,3102(1982)]。我们推测,该结构是由2-卤代乙基首先进攻鸟嘌呤的6位,随后发生分子内重排以及与胞嘧啶的二次交联反应而形成的。我们现已表明,与N-(2-氟乙基)-N'-环己基-N-亚硝基脲反应的DNA含有O6-(2-氟乙基)鸟嘌呤,从而证明了所提出机制的第一步会发生。此外,O6-(2-氟乙基)鸟苷水解为N1-(2-羟乙基)鸟苷,表明发生了必要的分子内重排。这两个观察结果极大地支持了所提出的2-卤代乙基亚硝基脲使DNA交联的途径。

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