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Pervasive and dynamic protein binding sites of the mRNA transcriptome in Saccharomyces cerevisiae

机译:酿酒酵母中mRNA转录组的普遍和动态蛋白结合位点

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Background Protein-RNA interactions are integral components of nearly every aspect of biology, including regulation of gene expression, assembly of cellular architectures, and pathogenesis of human diseases. However, studies in the past few decades have only uncovered a small fraction of the vast landscape of the protein-RNA interactome in any organism, and even less is known about the dynamics of protein-RNA interactions under changing developmental and environmental conditions. Results Here, we describe the gPAR-CLIP (global photoactivatable-ribonucleoside-enhanced crosslinking and immunopurification) approach for capturing regions of the untranslated, polyadenylated transcriptome bound by RNA-binding proteins (RBPs) in budding yeast. We report over 13,000 RBP crosslinking sites in untranslated regions (UTRs) covering 72% of protein-coding transcripts encoded in the genome, confirming 3' UTRs as major sites for RBP interaction. Comparative genomic analyses reveal that RBP crosslinking sites are highly conserved, and RNA folding predictions indicate that secondary structural elements are constrained by protein binding and may serve as generalizable modes of RNA recognition. Finally, 38% of 3' UTR crosslinking sites show changes in RBP occupancy upon glucose or nitrogen deprivation, with major impacts on metabolic pathways as well as mitochondrial and ribosomal gene expression. Conclusions Our study offers an unprecedented view of the pervasiveness and dynamics of protein-RNA interactions in vivo.
机译:背景技术蛋白质-RNA相互作用几乎是生物学各个方面不可或缺的组成部分,包括基因表达的调节,细胞结构的装配以及人类疾病的发病机理。然而,过去几十年的研究仅揭示了任何生物中蛋白质-RNA相互作用组广阔的一小部分,而在不断变化的发育和环境条件下,蛋白质-RNA相互作用的动力学知之甚少。结果在这里,我们描述了gPAR-CLIP(全局光活化核糖核苷增强的交联和免疫纯化)方法,用于捕获发芽酵母中被RNA结合蛋白(RBPs)结合的未翻译的聚腺苷酸转录组区域。我们报告了未翻译区域(UTRs)中超过13,000个RBP交联位点,覆盖了基因组中编码的蛋白质编码转录本的72%,确认3'UTRs是RBP相互作用的主要位点。比较的基因组分析表明,RBP交联位点是高度保守的,RNA折叠预测表明二级结构元件受蛋白质结合的约束,并且可以作为RNA识别的通用模式。最后,3'UTR交联位点的38%在葡萄糖或氮剥夺后显示RBP占有率的变化,对代谢途径以及线粒体和核糖体基因表达产生重大影响。结论我们的研究为体内蛋白质-RNA相互作用的普遍性和动力学提供了前所未有的观点。

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