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αCP binding to a cytosine-rich subset of polypyrimidine tracts drives a novel pathway of cassette exon splicing in the mammalian transcriptome

机译:αCP与富含嘧啶的富含胞嘧啶的亚群结合驱动了哺乳动物转录组中盒式外显子剪接的新途径

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摘要

Alternative splicing (AS) is a robust generator of mammalian transcriptome complexity. Splice site specification is controlled by interactions of cis-acting determinants on a transcript with specific RNA binding proteins. These interactions are frequently localized to the intronic U-rich polypyrimidine tracts (PPT) located 5′ to the majority of splice acceptor junctions. αCPs (also referred to as polyC-binding proteins (PCBPs) and hnRNPEs) comprise a subset of KH-domain proteins with high affinity and specificity for C-rich polypyrimidine motifs. Here, we demonstrate that αCPs promote the splicing of a defined subset of cassette exons via binding to a C-rich subset of polypyrimidine tracts located 5′ to the αCP-enhanced exonic segments. This enhancement of splice acceptor activity is linked to interactions of αCPs with the U2 snRNP complex and may be mediated by cooperative interactions with the canonical polypyrimidine tract binding protein, U2AF65. Analysis of αCP-targeted exons predicts a substantial impact on fundamental cell functions. These findings lead us to conclude that the αCPs play a direct and global role in modulating the splicing activity and inclusion of an array of cassette exons, thus driving a novel pathway of splice site regulation within the mammalian transcriptome.
机译:选择性剪接(AS)是哺乳动物转录组复杂性的强大生成器。剪接位点规格受转录物上顺式作用决定簇与特定RNA结合蛋白的相互作用控制。这些相互作用通常定位于位于大多数剪接受体连接点5'处的内含子丰富的U型聚嘧啶束(PPT)。 αCP(也称为polyC结合蛋白(PCBP)和hnRNPEs)包含一个KH域蛋白子集,对富含C的聚嘧啶基序具有高度亲和力和特异性。在这里,我们证明了αCP通过与定位于αCP增强外显子片段5'的富含嘧啶的富含C的子集结合,促进了盒式外显子的确定子集的拼接。剪接受体活性的这种增强与αCP与U2 snRNP复合物的相互作用有关,并且可以通过与典型的聚嘧啶束结合蛋白U2AF65的协同相互作用来介导。对靶向αCP的外显子的分析预测对基本细胞功能有实质性影响。这些发现使我们得出结论,αCP在调节剪接活性和一系列盒式外显子的包涵中起着直接和整体的作用,从而驱动了哺乳动物转录组内剪接位点调控的新途径。

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