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A versatile assay for RNA-binding proteins in living cells

机译:活细胞中RNA结合蛋白的多功能测定

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RNA-binding proteins (RBPs) control RNA fate from synthesis to decay. Since their cellular expression levels frequently do not reflect their in vivo activity, methods are needed to assess the steady state RNA-binding activity of RBPs as well as their responses to stimuli. While electrophoresis mobility shift assays (EMSA) have been used for such determinations, their results serve at best as proxies for the RBP activities in living cells. Here, we describe a quantitative dual fluorescence method to analyze protein-mRNA interactions in vivo. Known or candidate RBPs are fused to fluorescent proteins (eGFP, YFP), expressed in cells, cross-linked in vivo to RNA by ultraviolet light irradiation, and immunoprecipitated, after lysis, with a single chain antibody fragment directed against eGFP (GFP-binding protein, GBP). Polyadenylated RNA-binding activity of fusion proteins is assessed by hybridization with an oligo(DT) probe coupled with a red fluorophore. Since UV light is directly applied to living cells, the assay can be used to monitor dynamic changes in RNA-binding activities in response to biological or pharmacological stimuli. Notably, immunoprecipitation and hybridization can also be performed with commercially available GBP-coupled 96-well plates (GFP-multiTrap), allowing highly parallel RNA-binding measurements in a single experiment. Therefore, this method creates the possibility to conduct in vivo high-throughput RNA-binding assays. We believe that this fast and simple radioactivity-free method will find many useful applications in RNA biology.
机译:RNA结合蛋白(RBP)控制RNA从合成到衰变的命运。由于它们的细胞表达水平通常不能反映其体内活性,因此需要方法来评估RBP的稳态RNA结合活性及其对刺激的反应。尽管电泳迁移率漂移分析(EMSA)已用于此类测定,但其结果充其量可以用作活细胞中RBP活性的代理。在这里,我们描述了定量的双重荧光方法来分析体内蛋白质-mRNA相互作用。将已知或候选的RBP与荧光蛋白(eGFP,YFP)融合,在细胞中表达,通过紫外线照射在体内与RNA交联,并在裂解后用针对eGFP的单链抗体片段进行免疫沉淀(GFP结合蛋白,GBP)。通过与寡聚(DT)探针与红色荧光团偶联的杂交来评估融合蛋白的聚腺苷酸化RNA结合活性。由于将紫外线直接施加到活细胞上,因此该测定法可用于监测RNA结合活性对生物或药理刺激的动态变化。值得注意的是,免疫沉淀和杂交也可以使用市售的GBP偶联96孔板(GFP-multiTrap)进行,从而允许在单个实验中进行高度平行的RNA结合测量。因此,这种方法创造了进行体内高通量RNA结合测定的可能性。我们相信,这种快速,简单的无放射性方法将在RNA生物学中找到许多有用的应用。

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