Institute of Pharmacy and Molecular Biotechnology, Heidelberg University , 69120 Heidelberg, Germany.
J Am Chem Soc. 2013 Sep 18;135(37):13692-4. doi: 10.1021/ja407142f. Epub 2013 Sep 4.
In vitro transcription is an essential laboratory technique for enzymatic RNA synthesis. Unfortunately, no methods exist for analyzing quality and quantity of the synthesized RNA while the transcription proceeds. Here we describe a simple, robust, and universal system for monitoring and quantifying the synthesis of any RNA in real time without interference from abortive transcription byproducts. The distinguishing feature is a universal fluorescence module (UFM), consisting of the eGFP-like Spinach aptamer and a highly active hammerhead ribozyme, which is appended to the RNA of interest (ROI). In the transcription mixture, the primary transcript is cleaved rapidly behind the ROI, thereby releasing always the same UFM, independent of the ROI sequence, polymerase, or promoter used. The UFM binds to the target of the Spinach aptamer, the fluorogenic dye DFHBI, and thereby induces a strong fluorescence signal. This design allows real-time quantification, standardization, parallelization, and high-throughput screening.
体外转录是酶促 RNA 合成的一项重要实验室技术。遗憾的是,在转录进行的同时,尚无方法可用于分析合成 RNA 的质量和数量。在这里,我们描述了一种简单、稳健且通用的系统,可在实时监测和定量任何 RNA 的合成,而不会受到无意义转录副产物的干扰。其显著特点是通用荧光模块 (UFM),它由 eGFP 样 Spinach 适体和高效的 hammerhead 核酶组成,附加到感兴趣的 RNA(ROI)上。在转录混合物中,初级转录物在 ROI 后迅速被切割,从而释放出相同的 UFM,与 ROI 序列、聚合酶或使用的启动子无关。UFM 与 Spinach 适体的靶标、荧光染料 DFHBI 结合,从而诱导强烈的荧光信号。这种设计允许实时定量、标准化、并行化和高通量筛选。