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利用α-溶血素纳米孔监测 ATP 结合适体及其构象变化。

Monitoring of an ATP-binding aptamer and its conformational changes using an α-hemolysin nanopore.

机构信息

Key Laboratory for Advanced Materials & Department of Chemistry, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, P. R. China.

出版信息

Small. 2011 Jan 3;7(1):87-94. doi: 10.1002/smll.201001428.

Abstract

An aptamer is a specific oligonucleotide sequence that spontaneously forms a secondary structure capable of selectively binding an analyte. An aptamer's conformation is the key to specific binding of a target molecule, even in the case of very closely related targets. Nanopores are a sensitive tool for the single-molecule analysis of DNA, peptides, and proteins transporting through the pore. Herein, a single α-hemolysin natural nanopore is utilized to sense the conformational changes of an adenosine 5'-triphosphate (ATP)-binding aptamer (ABA). The known DNA sequence of the ABA is used as a model to develop real-time monitoring of molecular conformational changes that occur by binding targets. The native, folded ABA structure has a nanopore unfolding time of 4.17 ms, compared with 0.29 ms for the ABA:ATP complex. A complementary 14-mer strand, which binds the ABA sequence in the key nucleic acids responsible for folding, forms linear duplex DNA, resulting in a nanopore transit time of 0.50 ms and a higher capture probability than that of the folded ABA oligomer. Competition assays between the ABA:ATP and ABA:reporter complexes are carried out, and the results suggest that the ABA:ATP complex is formed preferentially. The nanopore allows for the detection of an ABA in its folded, ATP-bound, and linear conformations.

摘要

适体是一种特定的寡核苷酸序列,能够自发形成二级结构,从而选择性地结合分析物。适体的构象是其与靶分子特异性结合的关键,即使是在非常相似的靶分子的情况下也是如此。纳米孔是一种用于单分子分析 DNA、肽和蛋白质通过孔运输的敏感工具。在此,利用单个α-溶血素天然纳米孔来感知三磷酸腺苷(ATP)结合适体(ABA)的构象变化。已知的 ABA 的 DNA 序列被用作模型,以实时监测通过结合靶标而发生的分子构象变化。天然折叠的 ABA 结构的纳米孔展开时间为 4.17ms,而 ABA:ATP 复合物的纳米孔展开时间为 0.29ms。与折叠的 ABA 寡聚物相比,与负责折叠的关键核酸结合的互补 14 个碱基链形成线性双链 DNA,导致纳米孔传输时间为 0.50ms,捕获概率更高。对 ABA:ATP 和 ABA:报告分子复合物之间的竞争实验进行了研究,结果表明优先形成 ABA:ATP 复合物。纳米孔允许检测折叠的、ATP 结合的和线性的 ABA。

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