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Expression proteomics of UPF1 knockdown in HeLa cells reveals autoregulation of hnRNP A2/B1 mediated by alternative splicing resulting in nonsense-mediated mRNA decay

机译:在HeLa细胞中UPF1敲低的表达蛋白质组学揭示了由选择性剪接介导的hnRNP A2 / B1的自动调节,导致无义介导的mRNA衰变

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Background In addition to acting as an RNA quality control pathway, nonsense-mediated mRNA decay (NMD) plays roles in regulating normal gene expression. In particular, the extent to which alternative splicing is coupled to NMD and the roles of NMD in regulating uORF containing transcripts have been a matter of debate. Results In order to achieve a greater understanding of NMD regulated gene expression we used 2D-DiGE proteomics technology to examine the changes in protein expression induced in HeLa cells by UPF1 knockdown. QPCR based validation of the corresponding mRNAs, in response to both UPF1 knockdown and cycloheximide treatment, identified 17 bona fide NMD targets. Most of these were associated with bioinformatically predicted NMD activating features, predominantly upstream open reading frames (uORFs). Strikingly, however, the majority of transcripts up-regulated by UPF1 knockdown were either insensitive to, or even down-regulated by, cycloheximide treatment. Furthermore, the mRNA abundance of several down-regulated proteins failed to change upon UPF1 knockdown, indicating that UPF1's role in regulating mRNA and protein abundance is more complex than previously appreciated. Among the bona fide NMD targets, we identified a highly conserved AS-NMD event within the 3' UTR of the HNRNPA2B1 gene. Overexpression of GFP tagged hnRNP A2 resulted in a decrease in endogenous hnRNP A2 and B1 mRNA with a concurrent increase in the NMD sensitive isoforms. Conclusions Despite the large number of changes in protein expression upon UPF1 knockdown, a relatively small fraction of them can be directly attributed to the action of NMD on the corresponding mRNA. From amongst these we have identified a conserved AS-NMD event within HNRNPA2B1 that appears to mediate autoregulation of HNRNPA2B1 expression levels.
机译:背景技术除了充当RNA质量控制途径外,无意义介导的mRNA衰变(NMD)在调节正常基因表达中也发挥着作用。特别是,选择性剪接与NMD偶联的程度以及NMD在调控包含uORF的转录本中的作用一直是争论的问题。结果为了更深入地了解NMD调控的基因表达,我们使用了2D-DiGE蛋白质组学技术来检查通过UPF1敲除在HeLa细胞中诱导的蛋白质表达的变化。基于QPCR的相应mRNA的验证,响应于UPF1敲除和环己酰亚胺的处理,确定了17个真正的NMD靶标​​。其中大多数与生物信息学预测的NMD激活特征有关,主要是上游开放阅读框(uORF)。然而,令人惊讶的是,通过UPF1敲低而上调的大多数转录本对环己酰亚胺处理不敏感,甚至下调。此外,UPF1敲低后,几种下调蛋白的mRNA丰度无法改变,这表明UPF1在调节mRNA和蛋白丰度中的作用比以前理解的更为复杂。在真正的NMD目标中,我们确定了HNRNPA2B1基因3'UTR内高度保守的AS-NMD事件。 GFP标记的hnRNP A2的过表达导致内源性hnRNP A2和B1 mRNA的减少,同时NMD敏感性同工型增加。结论尽管在UPF1敲低后蛋白质表达发生了大量变化,但其中相对较小的比例可以直接归因于NMD对相应mRNA的作用。从这些当中,我们已经确定了HNRNPA2B1内一个保守的AS-NMD事件,该事件似乎介导了HNRNPA2B1表达水平的自动调节。

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