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利用工程化的核糖开关实现配体的灵敏和特异性检测。

Sensitive and specific detection of ligands using engineered riboswitches.

机构信息

Department of Chemistry, United States Naval Academy, Annapolis, MD 21402, USA.

Department of Chemistry, United States Naval Academy, Annapolis, MD 21402, USA.

出版信息

J Biotechnol. 2018 Apr 20;272-273:22-32. doi: 10.1016/j.jbiotec.2018.03.002. Epub 2018 Mar 5.

Abstract

Riboswitches are RNA elements found in non-coding regions of messenger RNAs that regulate gene expression through a ligand-triggered conformational change. Riboswitches typically bind tightly and specifically to their ligands, so they have the potential to serve as highly effective sensors in vitro. In B. subtilis and other gram-positive bacteria, purine nucleotide synthesis is regulated by riboswitches that bind to guanine. We modified the xpt-pbuX guanine riboswitch for use in a fluorescence quenching assay that allowed us to specifically detect and quantify guanine in vitro. Using this assay, we reproducibly detected as little as 5 nM guanine. We then produced sensors for 2'-deoxyguanosine and cyclic diguanylate (c-diGMP) by appending the P1 stem of the guanine riboswitch to the ligand-binding domains of a 2'-deoxyguanosine riboswitch and a c-diGMP riboswitch. These hybrid sensors could detect 15 nM 2'-deoxyguanosine and 3 nM c-diGMP, respectively. Each sensor retained the ligand specificity of its corresponding natural riboswitch. In order to extend the utility of our approach, we developed a strategy for the in vitro selection of sensors with novel ligand specificity. Here we report a proof-of-principle experiment that demonstrated the feasibility of our selection strategy.

摘要

Riboswitches 是信使 RNA 中非编码区域中发现的 RNA 元件,通过配体触发的构象变化来调节基因表达。Riboswitches 通常与它们的配体紧密且特异性结合,因此它们有可能成为体外非常有效的传感器。在枯草芽孢杆菌和其他革兰氏阳性菌中,嘌呤核苷酸合成受与鸟嘌呤结合的 riboswitches 调节。我们修改了 xpt-pbuX 鸟嘌呤 riboswitch,用于荧光猝灭测定,该测定允许我们在体外特异性检测和定量鸟嘌呤。使用该测定法,我们可重复性地检测到低至 5 nM 的鸟嘌呤。然后,我们通过将鸟嘌呤 riboswitch 的 P1 茎添加到 2'-脱氧鸟苷 riboswitch 和 c-diGMP riboswitch 的配体结合结构域,生成了用于 2'-脱氧鸟苷和环二鸟苷酸 (c-diGMP) 的传感器。这些杂交传感器可以分别检测到 15 nM 的 2'-脱氧鸟苷和 3 nM 的 c-diGMP。每个传感器都保留了其相应天然 riboswitch 的配体特异性。为了扩展我们方法的用途,我们开发了一种用于体外筛选具有新型配体特异性的传感器的策略。在这里,我们报告了一个原理验证实验,证明了我们选择策略的可行性。

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