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3' splice site recognition in nematode trans-splicing involves enhancer-dependent recruitment of U2 snRNP.

机译:线虫转剪接中的3'剪接位点识别涉及U2 snRNP的增强子依赖性募集。

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摘要

Trans-splicing requires that 5' and 3' splice sites be independently recognized. Here, we have used mutational analyses and a sensitive nuclease protection assay to determine the mechanism of trans-3' splice site recognition in vitro. Efficient recognition of the 3' splice site is dependent upon both the sequence of the 3' splice site itself and enhancer elements located in the 3' exon. We show that the presence of three distinct classes of enhancers results in increased binding of U2 snRNP to the branchpoint region. Several lines of evidence strongly suggest that the increased binding of U2 snRNP is mediated by U2AF. These results expand the roles of enhancers in constitutive splicing and provide direct support for the recruitment model of enhancer function.
机译:转拼需要独立识别5'和3'剪接位点。在这里,我们已使用突变分析和敏感的核酸酶保护测定法来确定反式3'剪接位点识别机制的体外。对3'剪接位点的有效识别取决于3'剪接位点本身的序列和位于3'外显子中的增强子元件。我们表明,存在三种不同类别的增强子,导致U2 snRNP与分支点区域的结合增加。几条证据强烈表明,U2 snRNP的结合增加是由U2AF介导的。这些结果扩展了增强子在组成型剪接中的作用,并为增强子功能的募集模型提供直接支持。

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