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首页> 外文期刊>Electrochimica Acta >Electrochemical responses of cytochrome c on gold electrodes modified with nucleic acid base derivatives-electrochemical and quartz crystal microbalance studies
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Electrochemical responses of cytochrome c on gold electrodes modified with nucleic acid base derivatives-electrochemical and quartz crystal microbalance studies

机译:细胞色素c在核酸碱基衍生物修饰的金电极上的电化学反应-电化学和石英晶体微量天平研究

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The electrochemical responses of cytochrome c on the gold electrodes modified with nucleic acid base derivatives such as 2-amino-6-purinethiol, 2-amino-6-mercaptopurine riboside, 6-amino-8-purinethiol and 2-thiouracil were investigated. The monolayers of 2-amino-6-purinethiol and 6-amino-8-purinethiol on gold can promote the electron transfer between cytochrome c in solution and gold electrode like that of well-known promoters such as pyridylthiol derivatives and carboxylic acid terminated alkanethiols, as reported previously. However, in the case of 2-amino-6mercaptopurine riboside modified gold electrode, the redox response of cytochrome c was completely inhibited, because a bulky ribose group inhibited the promoting ability. We also confirmed that the 2-thiouracil on gold electrode can facilitate the electron transfer between cytochrome c and gold electrode. The redox response of cytochrome c on 6-amino-8-purinethiol modified gold electrode was inhibited effectively by forming a hydrogen bonded complex with a complementary nucleic acid base derivative, thymidine. However, in the cases of 2-amino-6-purinethiol and 2-thiouracil modified gold electrodes, the redox response of cytochrome c was not inhibited by thymidine treatment. These phenomena should reflect the difference of adsorbed direction between 2-amino-6-purinethiol and 6-amino-8-purinethiol on gold and the unsuitable matching of thiouracil adsorbed on gold with thymidine in solution.
机译:研究了细胞色素c在核酸碱基衍生物(如2-氨基-6-嘌呤硫醇,2-氨基-6-巯嘌呤核糖核苷,6-氨基-8-嘌呤硫醇和2-硫尿嘧啶)修饰的金电极上的电化学响应。金上的2-氨基-6-嘌呤硫醇和6-氨基-8-嘌呤硫醇的单分子层可以促进溶液中的细胞色素c和金电极之间的电子转移,就像众所周知的促进剂如吡啶硫醇衍生物和羧酸封端的链烷硫醇一样,如先前报道。但是,在2-氨基-6巯基嘌呤核糖苷修饰的金电极的情况下,由于大的核糖基团抑制了促进能力,所以细胞色素c的氧化还原反应被完全抑制。我们还证实,金电极上的2-硫尿嘧啶可以促进细胞色素c和金电极之间的电子转移。通过与互补的核酸碱基衍生物胸腺嘧啶核苷形成氢键复合物,可有效抑制细胞色素c在6-氨基-8-嘌呤硫醇修饰的金电极上的氧化还原反应。然而,在2-氨基-6-嘌呤硫醇和2-硫尿嘧啶修饰的金电极的情况下,胸苷处理不会抑制细胞色素c的氧化还原反应。这些现象应反映2-氨基-6-嘌呤硫醇和6-氨基-8-嘌呤硫醇在金上的吸附方向的差异,以及金吸附的硫尿嘧啶与溶液中的胸苷的不合适匹配。

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