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A comprehensive analysis of 3' end sequencing data sets reveals novel polyadenylation signals and the repressive role of heterogeneous ribonucleoprotein C on cleavage and polyadenylation

机译:对3'末端测序数据集的综合分析揭示了新的多腺苷酸化信号和异质核糖核蛋白C对切割和多腺苷酸化的抑制作用。

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摘要

Alternative polyadenylation (APA) is a general mechanism of transcript diversification in mammals, which has been recently linked to proliferative states and cancer. Different 3' untranslated region (3' UTR) isoforms interact with different RNA-binding proteins (RBPs), which modify the stability, translation, and subcellular localization of the corresponding transcripts. Although the heterogeneity of pre-mRNA 3' end processing has been established with high-throughput approaches, the mechanisms that underlie systematic changes in 3' UTR lengths remain to be characterized. Through a uniform analysis of a large number of 3' end sequencing data sets, we have uncovered 18 signals, six of which are novel, whose positioning with respect to pre-mRNA cleavage sites indicates a role in pre-mRNA 3' end processing in both mouse and human. With 3' end sequencing we have demonstrated that the heterogeneous ribonucleoprotein C (HNRNPC), which binds the poly(U) motif whose frequency also peaks in the vicinity of polyadenylation (poly(A)) sites, has a genome-wide effect on poly(A) site usage. HNRNPC-regulated 3' UTRs are enriched in ELAV-like RBP 1 (ELAVL1) binding sites and include those of the CD47 gene, which participate in the recently discovered mechanism of 3' UTR-dependent protein localization (UDPL). Our study thus establishes an up-to-date, high-confidence catalog of 3' end processing sites and poly(A) signals, and it uncovers an important role of HNRNPC in regulating 3' end processing. It further suggests that U-rich elements mediate interactions with multiple RBPs that regulate different stages in a transcript's life cycle.
机译:替代性聚腺苷酸化(APA)是哺乳动物转录本多样化的一般机制,最近它已与增生状态和癌症相关联。不同的3'非翻译区(3'UTR)同工型与不同的RNA结合蛋白(RBP)相互作用,从而改变了相应转录本的稳定性,翻译和亚细胞定位。尽管已经通过高通量方法建立了mRNA前3'末端加工的异质性,但3'UTR长度发生系统性变化的机制仍有待表征。通过对大量3'末端测序数据集的统一分析,我们发现了18个信号,其中六个是新颖的,其相对于pre-mRNA裂解位点的定位表明了在mRNA的pre-mRNA 3'末端加工中的作用无论是老鼠还是人类。通过3'端测序,我们已经证明,异质核糖核蛋白C(HNRNPC)与poly(U)基序结合,其频率也在聚腺苷酸化(poly(A))位点附近达到峰值,对poly (一)网站使用情况。 HNRNPC调控的3'UTRs富含ELAV样的RBP 1(ELAVL1)结合位点,包括CD47基因的结合位点,后者参与了最近发现的3'UTR依赖性蛋白定位(UDPL)的机制。因此,我们的研究建立了3'末端加工位点和poly(A)信号的最新,高可信度目录,它揭示了HNRNPC在调节3'末端加工中的重要作用。它进一步表明,富含U的元素介导与多个RBP的相互作用,这些RBP调节转录本生命周期的不同阶段。

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