Freie Universität Berlin, Institute of Chemistry and Biochemistry, Laboratory of Structural Biochemistry, Berlin, Germany.
University of Turku, Department of Life Technologies, Turku, Finland.
Methods Enzymol. 2022;675:207-233. doi: 10.1016/bs.mie.2022.07.010. Epub 2022 Aug 19.
Transcription is the first and most highly regulated step in gene expression. Experimental techniques for monitoring transcription are, thus, important for studying gene expression and gene regulation as well as for translational research and drug development. Fluorescence methods are often superior to other techniques for real-time monitoring of biochemical processes. Green fluorescent proteins have long served as valuable tools for studying the process of translation. Here we present two methods that utilize fluorescent light-up RNA aptamers (FLAPs), the RNA mimics of green fluorescent proteins, to monitoring transcription and co-transcriptional RNA folding. FLAPs adopt defined three-dimensional folds that bind low molecular weight compounds called fluorogens with concomitant increase in fluorescence by many folds. FLAPs provide a strong fluorescence signal with low background that allows monitoring of transcription in real time in vitro and in vivo. However, it takes several seconds for RNA polymerase to synthesize FLAPs and the subsequent folding of the fluorogen-binding platform takes additional seconds or minutes. Here we show that Broccoli-FLAP is well suited for monitoring the rate of transcription initiation in a multi-round setup that mitigates the slow rate of the FLAP maturation. Furthermore, we demonstrate that a relatively slow and inefficient folding of iSpinach-FLAP can be taken advantage of for monitoring the action of RNA folding chaperones.
转录是基因表达的第一步也是调控程度最高的一步。因此,用于监测转录的实验技术对于研究基因表达和基因调控以及转化研究和药物开发都非常重要。荧光方法通常优于其他用于实时监测生化过程的技术。绿色荧光蛋白长期以来一直是研究翻译过程的有价值的工具。在这里,我们提出了两种利用荧光亮 RNA 适体(FLAPs)的方法,FLAPs 是绿色荧光蛋白的 RNA 模拟物,可用于监测转录和共转录 RNA 折叠。FLAPs 采用定义明确的三维折叠结构,与小分子化合物(称为荧光团)结合,同时荧光强度增加许多倍。FLAPs 提供了一个低背景的强荧光信号,允许在体外和体内实时监测转录。然而,RNA 聚合酶合成 FLAPs 需花费数秒钟,而随后的荧光团结合平台折叠则需要数秒或数分钟。在这里,我们表明,Broccoli-FLAP 非常适合用于监测多轮设置中的转录起始速度,从而减轻了 FLAP 成熟过程的缓慢速度。此外,我们证明,iSpinach-FLAP 相对较慢和低效的折叠可以用于监测 RNA 折叠伴侣的作用。