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A novel mRNA affinity purification technique for the identification of interacting proteins and transcripts in ribonucleoprotein complexes.

机译:一种新颖的mRNA亲和纯化技术,用于鉴定核糖核蛋白复合物中的相互作用蛋白和转录本。

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摘要

Intracellular mRNA targeting and localized translation are potential determinants for protein localization. To facilitate targeting, mRNAs possess specific cis-acting sequence motifs that are recognized by trans-acting RNA-binding proteins (RBPs). While many mRNAs are trafficked, our knowledge of the RBPs involved and presence of additional transcripts within these ribonucleoprotein (RNP) complexes is limited. To facilitate the identification of RBPs and transcripts that bind to specific mRNAs, we developed RNA-binding protein purification and identification (RaPID), a novel technique that allows for the affinity purification of MS2 aptamer-tagged mRNAs and subsequent detection of bound RBPs and transcripts using mass-spectometry and RT-PCR, respectively. RaPID effectively isolated specific mRNAs from both yeast and mammalian cells, and identified known mRNA-RBP interactions (e.g., ASH1-She2; beta-Actin-IMP1). By isolating tagged OXA1 mRNA using RaPID, we could identify a yeast COPI subunit (i.e., Sec27) as a candidate interacting protein. This finding was strengthened by the observation that a portion of OXA1 mRNA was delocalized in a sec27-1 temperature-sensitive mutant at restrictive temperatures. Finally, RaPID could also be used to show biochemically the coexistence of different RNA species within the same RNP complex (e.g., coprecipitation of the yeast SRO7, WSC2, SEC3, and IST2 mRNAs with ASH1 mRNA) for the first time.
机译:细胞内mRNA靶向和局部翻译是蛋白质定位的潜在决定因素。为了促进靶向,mRNA具有特定的顺式作用序列基序,可被反式作用的RNA结合蛋白(RBP)识别。尽管贩运了许多mRNA,但我们对RBP的了解以及这些核糖核蛋白(RNP)复合物中其他转录物的存在是有限的。为了促进识别与特定mRNA结合的RBP和转录本,我们开发了RNA结合蛋白纯化和鉴定(RaPID),这是一种可以亲和纯化MS2适体标记的mRNA并随后检测结合的RBP和转录本的新技术分别使用质谱和RT-PCR。 RaPID有效地从酵母和哺乳动物细胞中分离出特定的mRNA,并鉴定了已知的mRNA-RBP相互作用(例如ASH1-She2;β-Actin-IMP1)。通过使用RaPID分离标记的OXA1 mRNA,我们可以将酵母COPI亚基(即Sec27)识别为候选相互作用蛋白。通过在限制温度下在sec27-1温度敏感突变体中OXA1 mRNA的一部分发生离域的观察,进一步证实了这一发现。最后,RaPID还可用于首次化学显示同一RNP复合物中不同RNA种类的共存(例如,酵母SRO7,WSC2,SEC3和IST2 mRNA与ASH1 mRNA的共沉淀)。

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