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Polypyrimidine Track-binding Protein Binding Downstream of Caspase-2 Alternative Exon 9 Represses Its Inclusion*

机译:Caspase-2替代外显子9下游的多嘧啶轨道结合蛋白结合抑制了其包涵*

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摘要

We have been using the caspase-2 pre-mRNA as a model system to study the importance of alternative splicing in the regulation of programmed cell death. Inclusion or skipping of a cassette-type exon in the 3′ portion of this pre-mRNA leads to the production of isoforms with antagonistic activity in apoptosis. We previously identified a negative regulatory element (In100) located in the intron downstream of alternative exon 9. The upstream portion of this element harbors a decoy 3′ acceptor site that engages in nonproductive commitment complex interactions with the 5′ splice site of exon 9. This in turn confers a competitive advantage to the exon-skipping splicing pattern. Further characterization of the In100 element reveals a second, functionally distinct, domain located downstream from the decoy 3′ acceptor site. This downstream domain harbors several polypyrimidine track-binding protein (PTB)-binding sites. We show that PTB binding to these sites correlates with the negative effect on exon 9 inclusion. Finally, we show that both domains of the In100 element can function independently to repress exon 9 inclusion, although PTB binding in the vicinity of the decoy 3′ splice site can modulate its activity. Our results thus reveal a complex composite element that regulates caspase-2 exon 9 alternative splicing through a novel mechanism.
机译:我们一直在使用caspase-2 pre-mRNA作为模型系统来研究选择性剪接在调节程序性细胞死亡中的重要性。在此前mRNA的3'部分包含或跳过一个盒式外显子会导致在凋亡中具有拮抗活性的同工型的产生。我们之前鉴定了一个负调控元件(In100),位于替代外显子9的内含子下游。该元件的上游部分带有一个诱饵3'受体位点,该位点与外显子9的5'剪接位点进行非生产性承诺复合体相互作用。反过来,这为跳过外显子剪接模式提供了竞争优势。 In100元素的进一步表征揭示了位于诱饵3'受体位点下游的第二个功能不同的域。该下游结构域具有几个聚嘧啶轨道结合蛋白(PTB)结合位点。我们显示PTB绑定到这些网站与对外显子9包涵体的负面影响相关。最后,我们显示In100元件的两个结构域都可以独立发挥功能来抑制外显子9包含,尽管在诱饵3'剪接位点附近的PTB结合可以调节其活性。因此,我们的结果揭示了一个复杂的复合元件,该元件通过一种新机制调节caspase-2外显子9的选择性剪接。

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