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Quantitative proteomic analysis reveals concurrent RNA–protein interactions and identifies new RNA-binding proteins in Saccharomyces cerevisiae

机译:定量蛋白质组学分析揭示了并发的RNA-蛋白相互作用并鉴定了酿酒酵母中的新RNA结合蛋白

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摘要

A growing body of evidence supports the existence of an extensive network of RNA-binding proteins (RBPs) whose combinatorial binding affects the post-transcriptional fate of every mRNA in the cell—yet we still do not have a complete understanding of which proteins bind to mRNA, which of these bind concurrently, and when and where in the cell they bind. We describe here a method to identify the proteins that bind to RNA concurrently with an RBP of interest, using quantitative mass spectrometry combined with RNase treatment of affinity-purified RNA–protein complexes. We applied this method to the known RBPs Pab1, Nab2, and Puf3. Our method significantly enriched for known RBPs and is a clear improvement upon previous approaches in yeast. Our data reveal that some reported protein–protein interactions may instead reflect simultaneous binding to shared RNA targets. We also discovered more than 100 candidate RBPs, and we independently confirmed that 77% (23/30) bind directly to RNA. The previously recognized functions of the confirmed novel RBPs were remarkably diverse, and we mapped the RNA-binding region of one of these proteins, the transcriptional coactivator Mbf1, to a region distinct from its DNA-binding domain. Our results also provided new insights into the roles of Nab2 and Puf3 in post-transcriptional regulation by identifying other RBPs that bind simultaneously to the same mRNAs. While existing methods can identify sets of RBPs that interact with common RNA targets, our approach can determine which of those interactions are concurrent—a crucial distinction for understanding post-transcriptional regulation.
机译:越来越多的证据支持存在广泛的RNA结合蛋白(RBP)网络,其组合结合会影响细胞中每个mRNA的转录后命运,但我们仍不完全了解哪种蛋白结合mRNA,其中哪些可同时结合,以及它们在细胞中何时何地结合。我们在这里描述一种方法,该方法使用定量质谱结合RNase处理亲和纯化的RNA-蛋白质复合物,从而鉴定与感兴趣的RBP同时与RNA结合的蛋白质。我们将此方法应用于已知的RBP Pab1,Nab2和Puf3。我们的方法显着丰富了已知的RBP,是对酵母中以前方法的明显改进。我们的数据表明,某些报道的蛋白质间相互作用可能反而反映了与共享RNA靶标的同时结合。我们还发现了100多个候选RBP,并且我们独立确认77%(23/30)直接与RNA结合。确认的新型RBP的先前公认功能非常多样,我们将其中一种蛋白的转录结合激活因子​​Mbf1的RNA结合区域定位到与其DNA结合结构域不同的区域。我们的结果还通过鉴定同时结合相同mRNA的其他RBP,提供了对Nab2和Puf3在转录后调控中的作用的新见解。虽然现有方法可以识别与常见RNA靶标相互作用的RBP集,但我们的方法可以确定那些相互作用中的哪些是并发的-这是理解转录后调控的关键区别。

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