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首页> 外文期刊>Chemistry - A European Journal >HgII Ion Specifically Binds with T:T Mismatched Base Pair in Duplex DNA
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HgII Ion Specifically Binds with T:T Mismatched Base Pair in Duplex DNA

机译:Hg II 离子与双链DNA中的T:T不匹配碱基对特异性结合

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Metal-mediated base pair formation, resulting from the interaction between metal ions and artificial bases in oligonucleotides, has been developed for its potential application in nanotechnology. We have recently found that the T:T mismatched base pair binds with HgII ions to generate a novel metal-mediated base pair in duplex DNA. The thermal stability of the duplex with the T-Hg-T base pair was comparable to that of the corresponding T:A or A:T. The novel T-Hg-T base pair involving the natural base thymine is more convenient than the metal-mediated base pairs involving artificial bases due to the lack of time-consuming synthesis. Here, we examine the specificity and thermodynamic properties of the binding between HgII ions and the T:T mismatched base pair. Only the melting temperature of the duplex with T:T and not of the perfectly matched or other mismatched base pairs was found to specifically increase in the presence of HgII ions. HgII specifically bound with the T:T mismatched base pair at a molar ratio of 1:1 with a binding constant of 106 M−1, which is significantly higher than that for nonspecific metal ion–DNA interactions. Furthermore, the higher-order structure of the duplex was not significantly distorted by the HgII ion binding. Our results support the idea that the T-Hg-T base pair could eventually lead to progress in potential applications of metal-mediated base pairs in nanotechnology.
机译:由于金属离子与寡核苷酸中的人工碱基之间的相互作用而导致的金属介导的碱基对形成已被开发出来,以用于纳米技术中。我们最近发现,T:T错配的碱基对与Hg II 离子结合,在双链体DNA中产生了新型的金属介导的碱基对。具有T-Hg-T碱基对的双链体的热稳定性与相应的T:A或A:T相当。由于缺乏费时的合成,涉及天然碱基胸腺嘧啶的新颖的T-Hg-T碱基对比涉及人工碱基的金属介导的碱基对更方便。在这里,我们检查Hg II 离子与T:T不匹配碱基对之间结合的特异性和热力学性质。在Hg II 离子的存在下,只有具有T:T的双链体的熔化温度升高,而没有完美匹配的碱基对或其他不匹配的碱基对的熔化温度升高。 Hg II 与T:T错配碱基对特异性结合,摩尔比为1:1,结合常数为10 6 M -1 ,这显着高于非特异性金属离子与DNA的相互作用。此外,Hg II 离子结合不会明显破坏双链体的高阶结构。我们的结果支持了T-Hg-T碱基对最终可以导致金属介导的碱基对在纳米技术中的潜在应用方面取得进展的想法。

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