首页> 外文期刊>Analytical chemistry >Conformation-Dependent Exonuclease III Activity Mediated by Metal Ions Reshuffling on Thymine-Rich DNA Duplexes for an Ultrasensitive Electrochemical Method for Hg~(2+) Detection
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Conformation-Dependent Exonuclease III Activity Mediated by Metal Ions Reshuffling on Thymine-Rich DNA Duplexes for an Ultrasensitive Electrochemical Method for Hg~(2+) Detection

机译:富胸腺嘧啶脱氧核糖核酸双链体上金属离子改组介导的构象依赖性核酸外切酶III活性,用于Hg〜(2+)检测的超灵敏电化学方法

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摘要

Hg~(2+) is known to bind very strongly with T-T mismatches in DNA duplexes to form T-Hg~(2+)-T base pairs, the structure of which is stabilized by covalent N-Hg bonds and exhibits bonding strength higher than hydrogen bonds. In this work, we exploit exonuclease III (Exo III) activity on DNA hybrids containing T-Hg~(2+)-T base pairs and our experiments show that Hg~(2+) ions could intentionally trigger the activity of Exo III toward a designed thymine-rich DNA oligonucleotide (e-T-rich probe) by the conformational change of the probe. Our sensing strategy utilizes this conformation-dependent activity of Exo III, which is controlled through the cyclical shuffling of Hg~(2+) ions between the solution phase and the solid DNA hybrid. This interesting attribute has led to the development of an ultrasensitive detection platform for Hg~(2+) ions with a detection limit of 0.2 nM and a total assay time within minutes. This simple detection strategy could be used for the detection of other metal ions which exhibit specific interactions with natural or synthetic bases.
机译:已知Hg〜(2+)与DNA双链体中的TT错配非常牢固地结合形成T-Hg〜(2 +)-T碱基对,其结构通过共价N-Hg键稳定,并显示出更高的结合强度比氢键在这项工作中,我们利用核酸外切酶III(Exo III)在含有T-Hg〜(2 +)-T碱基对的DNA杂种上的活性,我们的实验表明Hg〜(2+)离子可以有意地触发Exo III对通过改变探针的构象,设计出富含胸腺嘧啶的DNA寡核苷酸(富含eT的探针)。我们的传感策略利用了Exo III的这种构象依赖性活性,该活性通过Hg〜(2+)离子在溶液相与固体DNA杂化物之间的循环改组来控制。这个有趣的属性导致了Hg〜(2+)离子超灵敏检测平台的开发,其检测极限为0.2 nM,总检测时间在数分钟内。这种简单的检测策略可用于检测其他与天然或合成碱发生特定相互作用的金属离子。

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