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无细胞转录-翻译系统:一种双读取检测法,用于表征核糖开关功能。

Cell-free transcription-translation system: a dual read-out assay to characterize riboswitch function.

机构信息

Institute for Organic Chemistry and Chemical Biology, Center for Biomolecular Magnetic Resonance (BMRZ), Johann Wolfgang Goethe-University, Frankfurt am Main, Hesse 60438, Germany.

出版信息

Nucleic Acids Res. 2023 Aug 25;51(15):e82. doi: 10.1093/nar/gkad574.

Abstract

Cell-free protein synthesis assays have become a valuable tool to understand transcriptional and translational processes. Here, we established a fluorescence-based coupled in vitro transcription-translation assay as a read-out system to simultaneously quantify mRNA and protein levels. We utilized the well-established quantification of the expression of shifted green fluorescent protein (sGFP) as a read-out of protein levels. In addition, we determined mRNA quantities using a fluorogenic Mango-(IV) RNA aptamer that becomes fluorescent upon binding to the fluorophore thiazole orange (TO). We utilized a Mango-(IV) RNA aptamer system comprising four subsequent Mango-(IV) RNA aptamer elements with improved sensitivity by building Mango arrays. The design of this reporter assay resulted in a sensitive read-out with a high signal-to-noise ratio, allowing us to monitor transcription and translation time courses in cell-free assays with continuous monitoring of fluorescence changes as well as snapshots of the reaction. Furthermore, we applied this dual read-out assay to investigate the function of thiamine-sensing riboswitches thiM and thiC from Escherichia coli and the adenine-sensing riboswitch ASW from Vibrio vulnificus and pbuE from Bacillus subtilis, which represent transcriptional and translational on- and off-riboswitches, respectively. This approach enabled a microplate-based application, a valuable addition to the toolbox for high-throughput screening of riboswitch function.

摘要

无细胞蛋白质合成测定法已成为理解转录和翻译过程的一种有价值的工具。在这里,我们建立了一种基于荧光的体外转录-翻译偶联测定法作为读出系统,以同时定量 mRNA 和蛋白质水平。我们利用已建立的移位绿色荧光蛋白(sGFP)表达的定量作为蛋白质水平的读出。此外,我们还使用了一种荧光 Mango-(IV)RNA 适体来测定 mRNA 量,该适体在与荧光染料噻唑橙(TO)结合时会发出荧光。我们利用 Mango-(IV)RNA 适体系统,该系统由四个后续的 Mango-(IV)RNA 适体元件组成,通过构建 Mango 阵列提高了灵敏度。该报告测定法的设计导致具有高信噪比的灵敏读出,使我们能够在无细胞测定中监测转录和翻译时程,同时连续监测荧光变化以及反应的快照。此外,我们将这种双读出测定法应用于研究来自大肠杆菌的硫胺素感应核糖开关 thiM 和 thiC 以及来自创伤弧菌的腺嘌呤感应核糖开关 ASW 和芽孢杆菌的 pbuE 的功能,它们分别代表转录和翻译的开和关核糖开关。这种方法能够实现基于微孔板的应用,是高通量筛选核糖开关功能的工具包的一个有价值的补充。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03c1/10450168/f49bb31339d0/gkad574figgra1.jpg

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