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The exon junction complex: a splicing factor for long intron containing transcripts?.

机译:外显子连接复合体:长内含子转录物的剪接因子?

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Alternative splicing provides one of the major mechanisms by which eukaryotic genomes can increase the diversity of transcripts and protein products encoded by a limited amount of genes. The spliceosome is involved in recognizing and removing intronic sequences and it is guided in this activity by splicing regulatory factors that determine the particular splice sites that are to be recognized and used for intron removal. Thus, by modulating the spliceosome's activity, these factors can cause different mRNA transcripts to be generated from the same precursor mRNA. In a recent RNAi screen for factors modulating RAS/MAPK signaling, we identified the Drosophila exon junction complex (EJC) as one of the components regulating the splicing of mapk transcripts. We showed that removal of EJC components caused multiple consecutive mapk exons to be skipped. Moreover, we determined that other fly genes that, like mapk, had particularly large introns, were also sensitive to disruption of the EJC. The importance of intron length in determining sensitivity to EJC disruption suggests that the EJC is functioning in exon definition, a splicing mechanism that occurs for long introns in particular.
机译:选择性剪接提供了一种主要机制,通过该机制真核生物基因组可以增加有限数量的基因编码的转录本和蛋白质产物的多样性。剪接体参与识别和去除内含子序列,并通过剪接调节因子来指导该活性,所述调节因子决定了待识别并用于内含子去除的特定剪接位点。因此,通过调节剪接体的活性,这些因素可导致从相同的前体mRNA产生不同的mRNA转录本。在最近的RNAi筛选中,调控RAS / MAPK信号转导的因素,我们确定了果蝇外显子连接复合体(EJC)作为调节mapk转录物拼接的成分之一。我们显示,删除EJC组件会导致跳过多个连续的mapk外显子。此外,我们确定其他飞行基因,例如mapk,具有特别大的内含子,也对EJC的破坏敏感。内含子长度在确定对EJC破坏的敏感性中的重要性表明EJC在外显子定义中起作用,这种剪接机制特别适用于长内含子。

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