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Modeling the combined effect of RNA-binding proteins and microRNAs in post-transcriptional regulation

机译:模拟RNA结合蛋白和microRNA在转录后调控中的联合作用

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摘要

Recent studies show that RNA-binding proteins (RBPs) and microRNAs (miRNAs) function in coordination with each other to control post-transcriptional regulation (PTR). Despite this, the majority of research to date has focused on the regulatory effect of individual RBPs or miRNAs. Here, we mapped both RBP and miRNA binding sites on human 3′UTRs and utilized this collection to better understand PTR. We show that the transcripts that lack competition for HuR binding are destabilized more after HuR depletion. We also confirm this finding for PUM1(2) by measuring genome-wide expression changes following the knockdown of PUM1(2) in HEK293 cells. Next, to find potential cooperative interactions, we identified the pairs of factors whose sites co-localize more often than expected by random chance. Upon examining these results for PUM1(2), we found that transcripts where the sites of PUM1(2) and its interacting miRNA form a stem-loop are more stabilized upon PUM1(2) depletion. Finally, using dinucleotide frequency and counts of regulatory sites as features in a regression model, we achieved an AU-ROC of 0.86 in predicting mRNA half-life in BEAS-2B cells. Altogether, our results suggest that future studies of PTR must consider the combined effects of RBPs and miRNAs, as well as their interactions.
机译:最近的研究表明,RNA结合蛋白(RBP)和microRNA(miRNA)相互配合,共同控制转录后调控(PTR)。尽管如此,迄今为止,大多数研究都集中在单个RBP或miRNA的调节作用上。在这里,我们将RBP和miRNA结合位点都映射到了人类3'UTR上,并利用该集合更好地了解了PTR。我们显示缺少竞争性的人类发展报告》绑定的转录本在人类发展报告》耗竭后更加不稳定。我们还通过测量在HEK293细胞中敲低PUM1(2)之后全基因组范围内的表达变化来确认PUM1(2)的这一发现。接下来,为了找到潜在的合作互动,我们确定了因位置随机比预期更频繁地共同定位的因素对。在检查了PUM1(2)的这些结果后,我们发现PUM1(2)及其相互作用的miRNA形成茎环的位置的转录本在PUM1(2)耗尽后更加稳定。最后,使用二核苷酸频率和调控位点的数量作为回归模型的特征,在预测BEAS-2B细胞的mRNA半衰期时,我们的AU-ROC为0.86。总之,我们的结果表明,未来的PTR研究必须考虑RBP和miRNA的组合作用及其相互作用。

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