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一种基于分裂适体结合诱导的DNA三向连接和核酸外切酶III辅助靶标循环的通用且高灵敏度均相电化学策略。

A versatile and highly sensitive homogeneous electrochemical strategy based on the split aptamer binding-induced DNA three-way junction and exonuclease III-assisted target recycling.

作者信息

Hou Ting, Li Wei, Zhang Lianfang, Li Feng

机构信息

College of Chemistry and Pharmaceutical Sciences, Qingdao Agricultural University, Qingdao 266109, China.

出版信息

Analyst. 2015 Aug 21;140(16):5748-53. doi: 10.1039/c5an01176k.

Abstract

Herein, a highly sensitive and versatile homogeneous electrochemical biosensing strategy is proposed, based on the split aptamer-incorporated DNA three-way junction and the exonuclease (Exo) III-assisted target recycling. The aptamer of adenosine triphosphate (ATP, chosen as the model analyte) is split into two fragments and embedded in single-stranded DNA1 and DNA2, respectively. ATP specifically binds with the split aptamers, bringing DNA1 and DNA2 close to each other, thus inducing the DNA three-way junction formation through the partial hybridization among DNA1, DNA2 and the methylene blue-labelled MB-DNA. Subsequently, MB-DNA is specifically digested by Exo III, releasing a MB-labelled mononucleotide, as well as a DNA1-ATP-DNA2 complex, which acts as the recycled target and hybridizes with another intact MB-DNA to initiate the subsequent cycling cleavage process. As a result, large amounts of MB-labelled mononucleotides are released, generating a significantly amplified electrochemical signal toward the ATP assay. To the best of our knowledge, it is the first example to successfully incorporate split aptamers into DNA three-way junctions and to be adopted in a homogeneous electrochemical assay. In addition to high sensitivity, this strategy also exhibits the advantages of simplicity and convenience, because it is carried out in a homogeneous solution, and sophisticated electrode modification processes are avoided. By simply changing the sequences of the split aptamer fragments, this versatile strategy can be easily adopted to assay a large spectrum of targets. Due to its advantages of high sensitivity, excellent selectivity, versatility and simple operation, the as-proposed approach has great potential to be applied in biochemical research and clinical practices.

摘要

在此,我们提出了一种基于拆分适配体掺入的DNA三向连接和核酸外切酶III辅助靶循环的高灵敏度且通用的均相电化学生物传感策略。三磷酸腺苷(ATP,作为模型分析物)的适配体被拆分为两个片段,分别嵌入单链DNA1和DNA2中。ATP与拆分后的适配体特异性结合,使DNA1和DNA2彼此靠近,从而通过DNA1、DNA2与亚甲基蓝标记的MB-DNA之间的部分杂交诱导DNA三向连接的形成。随后,MB-DNA被核酸外切酶III特异性消化,释放出一个亚甲基蓝标记的单核苷酸以及一个DNA1-ATP-DNA2复合物,该复合物作为循环靶标与另一个完整的MB-DNA杂交,启动后续的循环切割过程。结果,大量亚甲基蓝标记的单核苷酸被释放,产生了针对ATP检测的显著放大的电化学信号。据我们所知,这是首次成功将拆分适配体纳入DNA三向连接并应用于均相电化学检测的实例。除了高灵敏度外,该策略还具有简单方便的优点,因为它在均相溶液中进行,避免了复杂的电极修饰过程。通过简单改变拆分适配体片段的序列,这种通用策略可以轻松用于检测多种靶标。由于其具有高灵敏度、优异的选择性、通用性和操作简单等优点,所提出的方法在生化研究和临床实践中具有巨大的应用潜力。

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