基于分裂/完整适体的酶放大电子逻辑门。

Enzyme-amplified electronic logic gates based on split/intact aptamers.

机构信息

Key Laboratory of Regenerative Biology, South China Institute for Stem Cell Biology and Regenerative Medicine, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou 510530, China.

出版信息

Biosens Bioelectron. 2013 Apr 15;42:93-9. doi: 10.1016/j.bios.2012.10.030. Epub 2012 Oct 17.

Abstract

A series of enzyme-amplified electronic logic gates (OR, AND, NOR, and NAND) for one-spot simultaneous monitoring of small molecules and proteins has been constructed at the molecular level. This simple but universal system is based on target-induced self-assembly of split aptamer fragments or target-induced conformational changes of intact aptamers. For the OR and AND logic operations, the split aptamer fragments were used as the molecular recognition components, while for the NOR and NAND logic operations, the intact aptamers were used as the molecular recognition components. Using ATP and thrombin as inputs, the split/intact aptamers as molecular recognition elements, biotin as a tracer, and SA-HR as a reporter molecule, the electronic logic operations can be easily realized by generating amplified current signals as outputs. The logic system is robust and can be applied to human serum samples with excellent selectivity. Importantly, the reversibility of these logic gates makes the electronic system feasible to perform the set-reset function. Our work not only provides a "smart" and flexible logic platform for ATP and thrombin sensing, but also can be expanded for other ligands assay, such as adenosine monophosphate (AMP), theophylline, and cocaine, by rationally splitting their aptamer sequences into two fragments.

摘要

一系列酶放大的电子逻辑门(或、与、非或非)已在分子水平上构建,用于同时单点监测小分子和蛋白质。这个简单而通用的系统基于分裂适体片段的目标诱导自组装或完整适体的目标诱导构象变化。对于或和与逻辑操作,分裂适体片段被用作分子识别组件,而对于非或非逻辑操作,完整的适体被用作分子识别组件。使用 ATP 和凝血酶作为输入,分裂/完整适体作为分子识别元件,生物素作为示踪剂,SA-HR 作为报告分子,通过生成放大的电流信号作为输出,可以轻松实现电子逻辑操作。该逻辑系统稳健,可应用于人血清样品,具有出色的选择性。重要的是,这些逻辑门的可逆性使得电子系统能够执行置位-复位功能。我们的工作不仅为 ATP 和凝血酶感测提供了一个“智能”和灵活的逻辑平台,而且还可以通过合理地将它们的适体序列分裂成两个片段,扩展到其他配体的测定,如单磷酸腺苷(AMP)、茶碱和可卡因。

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