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N-烷基-N-亚硝基脲烷与硫醇的相互作用。

Interaction of N-alkyl-N-nitrosourethanes with thiols.

作者信息

Schoental R, Rive D J

机构信息

Toxicology Research Unit, Medical Research Council Laboratories, Woodmansterne Road, Carshalton, Surrey.

出版信息

Biochem J. 1965 Nov;97(2):466-74. doi: 10.1042/bj0970466.

DOI:10.1042/bj0970466
PMID:16749152
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1264663/
Abstract
  1. The interaction at room temperature of thiols (cysteine and certain of its derivatives, and glutathione) with N-alkyl-N-nitrosourethanes and with diazomethane gave complicated mixtures of products. 2. S-Methylcysteine and S-ethoxycarbonylcysteine, the main products of the reaction between cysteine and N-methyl-N-nitrosourethane, were isolated and unequivocally identified. Paper-chromatographic and other evidence was used for the identification of several other components of the mixtures of products obtained. 3. S-Methyl derivatives and their methyl esters were the common products formed from the thiol compounds with both N-methyl-N-nitrosourethane and with diazomethane. 4. The esters were unstable and hydrolysed readily. 5. S-Ethoxycarbonyl derivatives, the primary products of the reaction of the thiols with N-alkyl-N-nitrosourethanes, isomerized to the respective N-ethoxycarbonyl derivatives when the pH increased above 7.0; the migration of the ethoxycarbonyl group from S to N was particularly easy with cysteine, probably owing to the spatial proximity of the amino group. 6. It is suggested that the non-enzymic reactions in vitro of thiols with both N-methyl-N-nitrosourethane and diazomethane may represent models for events in vivo and might help in the studies of the carcinogenic process.
摘要
  1. 硫醇(半胱氨酸及其某些衍生物以及谷胱甘肽)在室温下与N-烷基-N-亚硝基脲烷和重氮甲烷相互作用,生成了复杂的产物混合物。2. 半胱氨酸与N-甲基-N-亚硝基脲烷反应的主要产物S-甲基半胱氨酸和S-乙氧羰基半胱氨酸被分离并明确鉴定。纸色谱法和其他证据被用于鉴定所得到的产物混合物中的其他几种成分。3. S-甲基衍生物及其甲酯是硫醇化合物与N-甲基-N-亚硝基脲烷和重氮甲烷反应生成的常见产物。4. 这些酯不稳定,容易水解。5. 硫醇与N-烷基-N-亚硝基脲烷反应的主要产物S-乙氧羰基衍生物,当pH值升高到7.0以上时,异构化为相应的N-乙氧羰基衍生物;对于半胱氨酸来说,乙氧羰基基团从S迁移到N特别容易,这可能是由于氨基在空间上距离较近。6. 有人提出,硫醇在体外与N-甲基-N-亚硝基脲烷和重氮甲烷的非酶促反应可能代表体内发生的事件模型,并可能有助于致癌过程的研究。

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