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链置换引发的菠菜分子信标。

A Spinach molecular beacon triggered by strand displacement.

机构信息

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

出版信息

RNA. 2014 Aug;20(8):1183-94. doi: 10.1261/rna.045047.114. Epub 2014 Jun 18.

Abstract

We have re-engineered the fluorescent RNA aptamer Spinach to be activated in a sequence-dependent manner. The original Spinach aptamer was extended at its 5'- and 3'-ends to create Spinach.ST, which is predicted to fold into an inactive conformation and thus prevent association with the small molecule fluorophore DFHBI. Hybridization of a specific trigger oligonucleotide to a designed toehold leads to toehold-initiated strand displacement and refolds Spinach into the active, fluorophore-binding conformation. Spinach.ST not only specifically detects its target oligonucleotide but can discriminate readily against single-nucleotide mismatches. RNA amplicons produced during nucleic acid sequence-based amplification (NASBA) of DNA or RNA targets could be specifically detected and reported in real-time by conformational activation of Spinach.ST generated by in vitro transcription. In order to adapt any target sequence to detection by a Spinach reporter we used a primer design technique that brings together otherwise distal toehold sequences via hairpin formation. The same techniques could potentially be used to adapt common Spinach reporters to non-nucleic acid analytes, rather than by making fusions between aptamers and Spinach.

摘要

我们重新设计了荧光 RNA 适体 Spinach,使其能够以序列依赖性的方式被激活。原始的 Spinach 适体在其 5'和 3'端被扩展,形成 Spinach.ST,它被预测会折叠成一种无活性的构象,从而阻止与小分子荧光染料 DFHBI 结合。特定触发寡核苷酸与设计的结合点的杂交导致结合点引发的链置换,并使 Spinach 重新折叠成具有活性的、结合荧光染料的构象。Spinach.ST 不仅可以特异性地检测其靶标寡核苷酸,而且可以很容易地区分单个核苷酸的错配。通过体外转录产生的 Spinach.ST 的构象激活,可以特异性地检测和实时报告 DNA 或 RNA 靶标核酸序列扩增(NASBA)过程中产生的 RNA 扩增子。为了使任何目标序列都可以通过 Spinach 报告基因来检测,我们使用了一种引物设计技术,通过发夹形成将原本远距离的结合点序列结合在一起。这些相同的技术可能也可以用于将常见的 Spinach 报告基因适应于非核酸分析物,而不是通过将适体与 Spinach 融合来实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1594/4105745/35f95a228cbf/1183f01.jpg

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