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首页> 外文期刊>The Journal of biological chemistry >Revisiting T7 RNA polymerase transcription in vitro with the Broccoli RNA aptamer as a simplified real-time fluorescent reporter
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Revisiting T7 RNA polymerase transcription in vitro with the Broccoli RNA aptamer as a simplified real-time fluorescent reporter

机译:用西兰花RNA适体的体外重新探测T7 RNA聚合酶转录作为简化的实时荧光报告器

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摘要

Methods for rapid and high-throughput screening of transcription in?vitro to examine reaction conditions, enzyme mutants, promoter variants, and small molecule modulators can be extremely valuable tools. However, these techniques may be difficult to establish or inaccessible to many researchers. To develop a straightforward and cost-effective platform for assessing transcription in?vitro, we used the “Broccoli” RNA aptamer as a direct, real-time fluorescent transcript readout. To demonstrate the utility of our approach, we screened the effect of common reaction conditions and components on bacteriophage T7 RNA polymerase (RNAP) activity using a common quantitative PCR instrument for fluorescence detection. Several essential conditions for in?vitro transcription by T7 RNAP were confirmed with this assay, including the importance of enzyme and substrate concentrations, covariation of magnesium and nucleoside triphosphates, and the effects of several typical additives. When we used this method to assess all possible point mutants of a canonical T7 RNAP promoter, our results coincided well with previous reports. This approach should translate well to a broad variety of bacteriophage in?vitro transcription systems and provides a platform for developing fluorescence-based readouts of more complex transcription systems in?vitro.
机译:用于在体外转录的快速和高通量筛选的方法,以检查反应条件,酶突变体,启动子变体和小分子调节剂可以是极其有价值的工具。然而,这些技术可能难以为许多研究人员建立或无法进入。为了开发一种直接和经济高效的平台,用于评估体外转录,我们使用“西兰花”RNA适体作为直接,实时荧光转录物读数。为了证明我们的方法的效用,我们使用用于荧光检测的常规定量PCR仪器筛选常见反应条件和组分对噬菌体T7 RNA聚合酶(RNAP)活性的影响。通过该测定法证实了通过T7 RNAP的若干基本条件,包括酶和底物浓度,镁和核苷三磷酸核苷酸的重要性,以及几种典型添加剂的作用。当我们利用这种方法来评估规范T7 RNAP启动子的所有可能的点突变体时,我们的结果与之前的报道相反。这种方法应良好地转化为多种噬菌体在体外转录系统中,并且提供了一种用于在体外开发更复杂的转录系统的荧光的读数的平台。

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