Department of Chemical Engineering, Imperial College London, London SW7 2AZ, UK.
Imperial College Centre for Synthetic Biology, Imperial College London, London SW7 2AZ, UK.
Nucleic Acids Res. 2020 Dec 16;48(22):e129. doi: 10.1093/nar/gkaa955.
5' Cap structures are ubiquitous on eukaryotic mRNAs, essential for post-transcriptional processing, translation initiation and stability. Here we describe a biosensor designed to detect the presence of cap structures on mRNAs that is also sensitive to mRNA degradation, so uncapped or degraded mRNAs can be detected in a single step. The biosensor is based on a chimeric protein that combines the recognition and transduction roles in a single molecule. The main feature of this sensor is its simplicity, enabling semi-quantitative analyses of capping levels with minimal instrumentation. The biosensor was demonstrated to detect the capping level on several in vitro transcribed mRNAs. Its sensitivity and dynamic range remained constant with RNAs ranging in size from 250 nt to approximately 2700 nt and the biosensor was able to detect variations in the capping level in increments of at least 20%, with a limit of detection of 2.4 pmol. Remarkably, it also can be applied to more complex analytes, such mRNA vaccines and mRNAs transcribed in vivo. This biosensor is an innovative example of a technology able to detect analytically challenging structures such as mRNA caps. It could find application in a variety of scenarios, from quality analysis of mRNA-based products such as vaccines to optimization of in vitro capping reactions.
5' 帽结构普遍存在于真核生物的 mRNA 中,对于转录后加工、翻译起始和稳定性至关重要。在这里,我们描述了一种生物传感器,该传感器旨在检测 mRNA 上帽结构的存在,同时对 mRNA 降解也很敏感,因此可以在单个步骤中检测无帽或降解的 mRNA。该生物传感器基于一种嵌合蛋白,该蛋白将识别和转导作用结合在单个分子中。该传感器的主要特点是其简单性,能够在最小的仪器设备下进行帽结构水平的半定量分析。该传感器已被证明可检测几种体外转录的 mRNA 的帽结构水平。其灵敏度和动态范围保持不变,所检测的 RNA 大小从 250 nt 到大约 2700 nt 不等,并且该传感器能够以至少 20%的增量检测帽结构水平的变化,检测限为 2.4 pmol。值得注意的是,它还可以应用于更复杂的分析物,如 mRNA 疫苗和体内转录的 mRNA。该生物传感器是一种能够检测具有分析挑战性的结构(如 mRNA 帽)的创新技术的范例。它可以在各种场景中找到应用,从疫苗等基于 mRNA 的产品的质量分析到体外加帽反应的优化。