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A neutral pH thermal hydrolysis method for quantification of structured RNAs

机译:用于定量结构RNA的中性pH热水解方法

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Riboswitch aptamers adopt diverse and complex tertiary structural folds that contain both single-stranded and double-stranded regions. We observe that this high degree of secondary structure leads to an appreciable hypochromicity that is not accounted for in the standard method to calculate extinction coefficients using nearest-neighbor effects, which results in a systematic underestimation of RNA concentrations. Here we present a practical method for quantifying riboswitch RNAs using thermal hydrolysis to generate the corresponding pool of mononucleotides, for which precise extinction coefficients have been measured. Thermal hydrolysis can be performed at neutral pH without reaction quenching, avoids the use of nucleases or expensive fluorescent dyes, and does not require generation of calibration curves. The accuracy of this method for determining RNA concentrations has been validated using quantitative 31P-NMR calibrated to an external standard. We expect that this simple procedure will be generally useful for the accurate quantification of any sequence-defined RNA sample, which is often a critical parameter for in vitro binding and kinetic assays.
机译:Riboswitch适体采用多样化和复杂的三级结构折叠,其含有单链和双链区域。我们观察到这种高度的二级结构导致可明显的低粒状性,其在标准方法中不算用于使用最近邻效应计算消光系数的标准方法,这导致系统低估RNA浓度。在这里,我们介绍了使用热水解来定量Riboswitch RNA的实际方法,以产生相应的单核苷酸池,其已经测量了精确的消光系数。热水解可以在中性pH下进行而不反应淬火,避免使用核酸酶或昂贵的荧光染料,并且不需要产生校准曲线。使用定量31P-NMR校准到外标的定量31P-NMR来验证该方法的准确性。我们预期,这种简单的程序通常可用于准确定量任何序列定义的RNA样品,这通常是用于体外结合和动力学测定的关键参数。

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