Kuwabara M, Yoshii G, Itoh T
Int J Radiat Biol Relat Stud Phys Chem Med. 1983 Aug;44(2):219-24. doi: 10.1080/09553008314551021.
Free radicals produced by the reactions of hydrated electrons with pyrimidine nucleosides halogenated at the sugar moiety (2'-chloro-2'-deoxyuridine and 2'-chlorothymidine) were studied by e.s.r. and spin-trapping. 2-Methyl-2-nitrosopropane was used as the spin-trap. The usual spin-trapping technique was extended to frozen and deoxygenated systems to avoid contamination of the trapped radicals with side-products by spin-trapping 2-methyl-2-nitrosopropane itself. When this method was applied to 2'-chloro-2'-deoxyuridine, a free radical at the C-2' position of the sugar moiety was spin-trapped together with a free radical at the C-5 position of the base moiety. This indicates that hydrated electrons both add to the base moiety and eliminate halogen anions from the halogenated sugar moiety. In the case of 2'-chlorothymidine, however, only a free radical attributed to H-addition at the C-6 position of the thymine base was observed. No radicals produced by the reaction of hydrated electrons with the halogenated sugar could be spin-trapped.
通过电子自旋共振(e.s.r.)和自旋捕获技术,研究了水合电子与糖部分卤代的嘧啶核苷(2'-氯-2'-脱氧尿苷和2'-氯胸苷)反应产生的自由基。使用2-甲基-2-亚硝基丙烷作为自旋捕获剂。常规的自旋捕获技术被扩展到冷冻和脱氧体系,以避免自旋捕获剂2-甲基-2-亚硝基丙烷自身的副产物对捕获的自由基造成污染。当该方法应用于2'-氯-2'-脱氧尿苷时,糖部分C-2'位置的自由基与碱基部分C-5位置的自由基一起被自旋捕获。这表明水合电子既加成到碱基部分,又从卤代糖部分消除卤阴离子。然而,在2'-氯胸苷的情况下,仅观察到归因于胸腺嘧啶碱基C-6位置氢加成的自由基。水合电子与卤代糖反应产生的自由基无法被自旋捕获。