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Light-up and FRET aptamer reporters; evaluating their applications for imaging transcription in eukaryotic cells

机译:点亮和FRET适体报告基因;评估其在真核细胞中成像转录的应用

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摘要

The regulation of RNA transcription is central to cellular function. Changes in gene expression drive differentiation and cellular responses to events such as injury. RNA trafficking can also have a large impact on protein expression and its localization. Thus, the ability to image RNA transcription and trafficking in real time and in living cells is a worthwhile goal that has been difficult to achieve. The availability of “light-up” aptamers that cause an increase in fluorescence of their ligands when bound by the aptamer have shown promise for reporting on RNA production and localization in vivo. Here we have investigated two light-up aptamers (the malachite green aptamer and the Spinach aptamers) for their suitability as reporters of RNA expression in vivo using two eukaryotic cell types, yeast and mammalian. Our analysis focused on the aptamer ligands, their contributions to background noise, and the impact of tandem aptamer strings on signal strength and ligand affinity. Whereas the background fluorescence is very low in vitro, this is not always true for cell imaging. Our results suggest the need for caution in using light-up aptamers as reporters for imaging RNA. In particular, images should be collected and analyzed by operators blinded to the sample identities. The appropriate control condition of ligand with the cells in the absence of aptamer expression must be included in each experiment. This control condition establishes that the specific interaction of ligand with aptamer, rather than nonspecific interactions with unknown cell elements, is responsible for the observed fluorescent signals. High background signals due to nonspecific interactions of aptamer ligands with cell components can be minimized by using IMAGEtags (Intracellular Multiaptamer GEnetic tags), which signal by FRET and are promising RNA reporters for imaging transcription.
机译:RNA转录的调控对细胞功能至关重要。基因表达的变化驱动分化和细胞对诸如伤害等事件的反应。 RNA转运也可以对蛋白质表达及其定位产生重大影响。因此,实时和在活细胞中对RNA转录和运输进行成像的能力是一个难以实现的有价值的目标。当与适体结合时,引起配体荧光增加的“发光”适体的可用性已显示出有望报道体内RNA的产生和定位。在这里,我们研究了两种发光适体(孔雀石绿适体和菠菜适体)是否适合作为使用两种真核细胞类型(酵母和哺乳动物)在体内表达RNA的报道分子。我们的分析集中在适体配体,它们对背景噪声的贡献以及串联适体串对信号强度和配体亲和力的影响。尽管背景荧光在体外非常低,但对于细胞成像并非总是如此。我们的结果表明在使用发光适体作为成像RNA的报告基因时需要谨慎。特别是,图像应由不了解样品身份的操作员收集和分析。在每个实验中必须包括在不存在适体表达的情况下细胞对配体的适当控制条件。该控制条件确定配体与适体的特异性相互作用,而不是与未知细胞元件的非特异性相互作用,负责观察到的荧光信号。适体配体与细胞成分之间非特异性相互作用所引起的高背景信号可以通过使用IMAGEtags(细胞内多适体基因标签)来最小化,IMAGEtags通过FRET发出信号,有望成为转录成像的RNA报告基因。

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