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Mammalian tissues defective in nonsense-mediated mRNA decay display highly aberrant splicing patterns

机译:在无意义介导的mRNA衰变中有缺陷的哺乳动物组织显示出高度异常的剪接模式

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Background: Nonsense-mediated m RNA decay (NMD) affects the outcome of alternative splicing by degrading m RNA isoforms with premature termination codons. Splicing regulators constitute important NMD targets; however, the extent to which loss of NMD causes extensive deregulation of alternative splicing has not previously been assayed in a global, unbiased manner. Here, we combine mouse genetics and RNA-seq to provide the first in vivo analysis of the global impact of NMD on splicing patterns in two primary mouse tissues ablated for the NMD factor UPF2. Results: We developed a bioinformatic pipeline that maps RNA-seq data to a combinatorial exon database, predicts NMD-susceptibility for m RNA isoforms and calculates the distribution of major splice isoform classes. We present a catalog of NMD-regulated alternative splicing events, showing that isoforms of 30% of all expressed genes are upregulated in NMD-deficient cells and that NMD targets all major splicing classes. Importantly, NMD- dependent effects are not restricted to premature termination codon+ isoforms but also involve an abundance of splicing events that do not generate premature termination codons. Supporting their functional importance, the latter events are associated with high intronic conservation. Conclusions: Our data demonstrate that NMD regulates alternative splicing outcomes through an intricate web of splicing regulators and that its loss leads to the deregulation of a panoply of splicing events, providing novel insights into its role in core- and tissue-specific regulation of gene expression. Thus, our study extends the importance of NMD from an m RNA quality pathway to a regulator of several layers of gene expression.
机译:背景:废话介导的m RNA衰变(NMD)通过降解具有过早终止密码子的m RNA同工型来影响选择性剪接的结果。拼接调节器是NMD的重要目标;但是,以前尚未以整体,无偏见的方式来分析NMD缺失导致广泛替代剪接调控的程度。在这里,我们结合了小鼠遗传学和RNA-seq的功能,首次对NMD对消融​​NMD因子UPF2的两个主要小鼠组织中的剪接模式的整体影响进行了首次体内分析。结果:我们开发了一条生物信息学流水线,将RNA-seq数据映射到组合外显子数据库,预测了mRNA亚型的NMD敏感性,并计算了主要剪接亚型的分布。我们提供了NMD调控的选择性剪接事件的目录,显示所有表达基因的30%的同工型在NMD缺陷细胞中被上调,并且NMD靶向所有主要的剪接类。重要的是,依赖NMD的作用不仅限于过早终止密码子+同工型,还涉及大量不产生过早终止密码子的剪接事件。支持它们的功能重要性,后面的事件与高度的内含子保守性有关。结论:我们的数据表明NMD通过错综复杂的剪接调节剂网络调节其他剪接结果,其丢失导致一系列剪接事件的解除调节,从而为其在核心和组织特异性基因表达调控中的作用提供了新见解。 。因此,我们的研究将NMD的重要性从m RNA质量途径扩展到了几层基因表达的调节剂。

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