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将无酶 DNA 电路适配于环介导等温扩增反应的检测。

Adapting enzyme-free DNA circuits to the detection of loop-mediated isothermal amplification reactions.

机构信息

Institute for Cellular and Molecular Biology, Center for Systems and Synthetic Biology, Department of Chemistry and Biochemistry, University of Texas, Austin, Texas 78712, USA.

出版信息

Anal Chem. 2012 Oct 2;84(19):8371-7. doi: 10.1021/ac301944v. Epub 2012 Sep 14.

Abstract

Loop-mediated isothermal amplification of DNA (LAMP) is a powerful isothermal nucleic acid amplification technique that can accumulate ~10(9) copies from less than 10 copies of input template within an hour or two. Unfortunately, while the amplification reactions are extremely powerful, the quantitative detection of LAMP products is still analytically difficult. In this article, to both improve the specificity of LAMP detection and to make direct readout of LAMP amplification simpler and much more reliable, we have developed a nonenzymatic nucleic acid circuit (catalyzed hairpin assembly, CHA) that can both amplify and integrate the specific sequence signals present in LAMP amplicons. Through a hairpin acceptor, one of the four loop products amplified from the LAMP is transduced to an active catalyst ssDNA which can in turn trigger a CHA reaction. After CHA detection, even less than 10 molecules/μL model templates (M13mp18) can produce significant signal, and both nonspecific template and parasitic amplicons cannot bring interference at all. More importantly, to further enhance the specificity, we have designed a dual-CHA circuit that only gave positive responses in presence of two LAMP loops. The AND-GATE detector will act as a simultaneous, specific readout of the LAMP product, rather than of competing and parasitic amplicons.

摘要

环介导等温扩增技术(LAMP)是一种强大的等温核酸扩增技术,能够在一到两个小时内从不到 10 个输入模板拷贝中累积~10^9 个拷贝。不幸的是,虽然扩增反应非常强大,但 LAMP 产物的定量检测仍然具有分析上的困难。在本文中,为了提高 LAMP 检测的特异性,并使 LAMP 扩增的直接读出更简单、更可靠,我们开发了一种非酶核酸电路(催化发夹组装,CHA),它可以放大和整合 LAMP 扩增子中存在的特定序列信号。通过发夹受体,从 LAMP 扩增的四个环产物之一被转导到活性催化剂 ssDNA,后者可以反过来触发 CHA 反应。在 CHA 检测之后,即使是低于 10 个分子/μL 的模型模板(M13mp18)也可以产生显著的信号,并且非特异性模板和寄生扩增子根本不会带来干扰。更重要的是,为了进一步提高特异性,我们设计了一种双 CHA 电路,只有在存在两个 LAMP 环的情况下才会产生阳性反应。与门探测器将作为 LAMP 产物的同时、特异性读出,而不是对竞争和寄生扩增子的读出。

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