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Alternative polyadenylation diversifies post‐transcriptional regulation by selective RNA–protein interactions

机译:选择性的聚腺苷酸化通过选择性的RNA-蛋白质相互作用使转录后调控多样化

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摘要

Recent research has uncovered extensive variability in the boundaries of transcript isoforms, yet the functional consequences of this variation remain largely unexplored. Here, we systematically discriminate between the molecular phenotypes of overlapping coding and non‐coding transcriptional events from each genic locus using a novel genome‐wide, nucleotide‐resolution technique to quantify the half‐lives of 3′ transcript isoforms in yeast. Our results reveal widespread differences in stability among isoforms for hundreds of genes in a single condition, and that variation of even a single nucleotide in the 3′ untranslated region (UTR) can affect transcript stability. While previous instances of negative associations between 3′ UTR length and transcript stability have been reported, here, we find that shorter isoforms are not necessarily more stable. We demonstrate the role of RNA‐protein interactions in conditioning isoform‐specific stability, showing that PUF3 binds and destabilizes specific polyadenylation isoforms. Our findings indicate that although the functional elements of a gene are encoded in DNA sequence, the selective incorporation of these elements into RNA through transcript boundary variation allows a single gene to have diverse functional consequences.
机译:最近的研究发现转录异构体的边界存在广泛的变异性,但是这种变异的功能后果仍未得到充分的探索。在这里,我们使用一种新型的全基因组核苷酸分辨率技术来量化酵母中3'转录本同工型的半衰期,从而系统地区分了每个基因位点的重叠编码和非编码转录事件的分子表型。我们的结果揭示了在单一条件下数百个基因的同工型之间稳定性的广泛差异,并且3'非翻译区(UTR)中甚至单个核苷酸的变异也会影响转录本的稳定性。虽然以前报道了3'UTR长度和转录本稳定性之间存在负相关的情况,但在这里,我们发现较短的同工型不一定更稳定。我们证明了RNA蛋白相互作用在调节同工型特异性稳定性中的作用,表明PUF3结合并使特定的聚腺苷酸同工型不稳定。我们的发现表明,尽管基因的功能元件是在DNA序列中编码的,但是通过转录本边界变化将这些元件选择性地掺入RNA允许单个基因产生多种功能后果。

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