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Combinatorial splicing of exon pairs by two-site binding of U1 small nuclear ribonucleoprotein particle.

机译:通过U1小核糖核糖蛋白颗粒的两点结合,外显子对的组合剪接。

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摘要

A two-site model for the binding of U1 small nuclear ribonucleoprotein particle (U1 snRNP) was tested in order to understand how exon partners are selected in complex pre-mRNAs containing alternative exons. In this model, it is proposed that two U1 snRNPs define a functional unit of splicing by base pairing to the 3' boundary of the downstream exon as well as the 5' boundary of the intron to be spliced. Three-exon substrates contained the alternatively spliced exon 4 (E4) region of the preprotachykinin gene. Combined 5' splice site mutations at neighboring exons demonstrate that weakened binding of U1 snRNP at the downstream site and improved U1 snRNP binding at the upstream site result in the failure to rescue splicing of the intron between the mutations. These results indicate the stringency of the requirement for binding a second U1 snRNP to the downstream 5' splice site for these substrates as opposed to an alternative model in which a certain threshold level of U1 snRNP can be provided at either site. Further support for the two-site model is provided by single-site mutations in the 5' splice site of the third exon, E5, that weaken base complementarity to U1 RNA. These mutations block E5 branchpoint formation and, surprisingly, generate novel branchpoints that are specified chiefly by their proximity to a cryptic 5' splice site located at the 3' terminus of the pre-mRNA. The experiments shown here demonstrate a true stimulation of 3' splice site activity by the downstream binding of U1 snRNP and suggest a possible mechanism by which combinatorial patterns of exon selection are achieved for alternatively spliced pre-mRNAs.
机译:测试了一个结合U1小核糖核蛋白颗粒(U1 snRNP)的两点模型,以了解如何在含有替代外显子的复杂pre-mRNA中选择外显子伴侣。在该模型中,建议两个U1 snRNP通过与下游外显子的3'边界以及待剪接的内含子的5'边界进行碱基配对来定义一个剪接功能单元。三外显子的底物包含前激肽激肽原基因的交替剪接的第4外显子(E4)区。相邻外显子上合并的5'剪接位点突变表明,下游位点的U1 snRNP结合力减弱,上游位点的U1 snRNP结合力提高,导致未能挽救突变之间的内含子剪接。这些结果表明,将第二个U1 snRNP结合到这些底物的下游5'剪接位点的要求很严格,这与另一种模型不同,后者可以在任一位点提供一定的阈值水平的U1 snRNP。第三位外显子E5的5'剪接位点的单点突变削弱了与U1 RNA的碱基互补性,从而为两点模型提供了进一步的支持。这些突变阻止了E5分支点的形成,并且令人惊讶地产生了新的分支点,这些新的分支点主要是由于它们与位于前mRNA的3'末端的隐蔽5'剪接位点的接近而指定的。这里显示的实验证明了U1 snRNP的下游结合真正刺激了3'剪接位点的活性,并提出了可能的机制,通过该机制可以实现选择性剪接的pre-mRNA的外显子选择的组合模式。

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