Laboratoire d'Electrochimie Moléculaire, Unité Mixte de Recherche Université-CNRS No. 7591, Université Paris Diderot, 75205 Paris Cedex 13, France.
J Am Chem Soc. 2010 Jul 28;132(29):10142-7. doi: 10.1021/ja103421f.
The effect of base pairing by cytosine on the electrochemical oxidation of guanine is examined by means of cyclic voltammetry on carefully purified reactants in a solvent, CHCl(3), which strongly favors the formation of an H-bonded pair. The thermodynamics and kinetics of the oxidation reaction are not strongly influenced by the formation of the pair. They are actually similar to those of the reaction in which 2,6-lutidine, an encumbered base that cannot form a pair with guanine, replaces cytosine. The reaction does not entail a concerted proton-electron mechanism, as attested by the absence of H/D isotope effect. It rather involves the rate-determining formation of the cation radical, followed by its deprotonation and dimerization of the resulting neutral radical in competition with its further oxidation.
通过循环伏安法在 CHCl3 溶剂中仔细纯化反应物,研究了胞嘧啶碱基配对对鸟嘌呤电化学氧化的影响,CHCl3 溶剂强烈有利于氢键配对的形成。氧化反应的热力学和动力学不受配对形成的强烈影响。它们实际上与反应类似,其中 2,6- 六甲基吡啶,一种不能与鸟嘌呤形成配对的阻碍碱基,取代了胞嘧啶。该反应不涉及协同质子-电子机制,这一点可以从缺乏 H/D 同位素效应得到证明。它涉及阳离子自由基的形成,随后是其去质子化和中性自由基的二聚化,这与竞争进一步氧化的反应竞争。