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U1小核核糖核蛋白/5'剪接位点相互作用影响U2AF65与下游3'剪接位点的结合。

The U1 small nuclear ribonucleoprotein/5' splice site interaction affects U2AF65 binding to the downstream 3' splice site.

作者信息

Côté J, Beaudoin J, Tacke R, Chabot B

机构信息

Département de Microbiologie, Faculté de Médecine, Université de Sherbrooke, Québec, Canada.

出版信息

J Biol Chem. 1995 Feb 24;270(8):4031-6. doi: 10.1074/jbc.270.8.4031.

Abstract

In the gene of the neural cell adhesion molecule, the 5' splice site of the alternate exon 18 plays an important role in establishing regulated splicing profiles. To understand how the 5' splice site of exon 18 contributes to splicing regulation, we have investigated the interaction of the U2AF65 splicing factor to pre-mRNAs that contained portions of the constitutive exon 17 or the alternate exon 18 fused to exon 19 and separated by a shortened intron. Despite sharing an identical 3' splice site, only the pre-mRNA that contained a portion of exon 17 and its associated 5' splice site displayed efficient U2AF65 cross-linking. Strikingly, a G-->U mutation at position +6 of the intron, converting the 5' splice site of exon 18 into that of exon 17, stimulated U2AF65 crosslinking. The improved cross-linking efficiency of U2AF65 to a pre-mRNA carrying the 5' splice site of exon 17 required the integrity of the 5' end of U1 but not of U2 small nuclear RNA. Our results indicate that neural cell adhesion molecule 5' splice site sequences influence U2AF65 binding through a U1 small nuclear ribonucleoprotein/U2AF interaction that occurs at the commitment stage of spliceosome assembly, before stable binding of the U2 small nuclear ribonucleoprotein. Thus, the 5' splice sites of exons 17 and 18 differentially affect U2AF65 binding to the 3' splice site of exon 19. Factors that modulate U1 small nuclear ribonucleoprotein binding to these 5' splice sites may play a critical role in regulating exon 18 skipping.

摘要

在神经细胞黏附分子基因中,可变外显子18的5'剪接位点在建立调控剪接模式中发挥重要作用。为了解外显子18的5'剪接位点如何促进剪接调控,我们研究了U2AF65剪接因子与包含组成型外显子17部分或与外显子19融合并由缩短内含子分隔的可变外显子18的前体mRNA之间的相互作用。尽管共享相同的3'剪接位点,但只有包含外显子17部分及其相关5'剪接位点的前体mRNA显示出有效的U2AF65交联。令人惊讶的是,内含子+6位置的G→U突变,将外显子18的5'剪接位点转换为外显子17的5'剪接位点,刺激了U2AF65交联。U2AF65与携带外显子17的5'剪接位点的前体mRNA交联效率的提高需要U1小核RNA而非U2小核RNA 5'端的完整性。我们的结果表明,神经细胞黏附分子5'剪接位点序列通过在剪接体组装的起始阶段、在U2小核核糖核蛋白稳定结合之前发生的U1小核糖核蛋白/U2AF相互作用影响U2AF65结合。因此,外显子17和18的5'剪接位点对外显子19的3'剪接位点的U2AF65结合有不同影响。调节U1小核糖核蛋白与这些5'剪接位点结合的因子可能在调控外显子18跳跃中起关键作用。

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