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RIPiT-Seq: A high-throughput approach for footprinting RNA: Protein complexes

机译:RIPiT-Seq:一种用于RNA印迹的高通量方法:蛋白复合物

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Development of high-throughput approaches to map the RNA interaction sites of individual RNA binding proteins (RBPs) transcriptome-wide is rapidly transforming our understanding of post-transcriptional gene regulatory mechanisms. Here we describe a ribonucleoprotein (RNP) footprinting approach we recently developed for identifying occupancy sites of both individual RBPs and multi-subunit RNP complexes. RNA:protein immunoprecipitation in tandem (RIPiT) yields highly specific RNA footprints of cellular RNPs isolated via two sequential purifications; the resulting RNA footprints can then be identified by high-throughput sequencing (Seq). RIPiT-Seq is broadly applicable to all RBPs regardless of their RNA binding mode and thus provides a means to map the RNA binding sites of RBPs with poor inherent ultraviolet (UV) crosslinkability. Further, among current high-throughput approaches, RIPiT has the unique capacity to differentiate binding sites of RNPs with overlapping protein composition. It is therefore particularly suited for studying dynamic RNP assemblages whose composition evolves as gene expression proceeds.
机译:高通量方法在整个转录组中定位单个RNA结合蛋白(RBP)的RNA相互作用位点的图谱的开发正在迅速改变我们对转录后基因调控机制的理解。在这里,我们描述了一种核糖核蛋白(RNP)足迹方法,该方法是我们最近开发的,用于识别单个RBP和多亚基RNP复合体的占据位点。串联的RNA:蛋白质免疫沉淀(RIPiT)产生了通过两次连续纯化分离的细胞RNP的高特异性RNA印迹;然后可以通过高通量测序(Seq)鉴定得到的RNA足迹。 RIPiT-Seq广泛适用于所有RBP,而不论其RNA结合模式如何,因此提供了一种手段,可绘制固有紫外线(UV)交联性差的RBP的RNA结合位点。此外,在当前的高通量方法中,RIPiT具有区分具有重叠蛋白质组成的RNP结合位点的独特能力。因此,它特别适合研究动态RNP组合,其组成随基因表达的进行而发展。

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