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Control of Pre-mRNA Splicing by the General Splicing Factors PUF60 and U2AF65

机译:通过常规剪接因子PUF60和U2AF65控制前mRNA剪接

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摘要

Pre-mRNA splicing is a crucial step in gene expression, and accurate recognition of splice sites is an essential part of this process. Splice sites with weak matches to the consensus sequences are common, though it is not clear how such sites are efficiently utilized. Using an in vitro splicing-complementation approach, we identified PUF60 as a factor that promotes splicing of an intron with a weak 3' splice-site. PUF60 has homology to U2AF(65), a general splicing factor that facilitates 3' splice-site recognition at the early stages of spliceosome assembly. We demonstrate that PUF60 can functionally substitute for U2AF(65)in vitro, but splicing is strongly stimulated by the presence of both proteins. Reduction of either PUF60 or U2AF(65) in cells alters the splicing pattern of endogenous transcripts, consistent with the idea that regulation of PUF60 and U2AF(65) levels can dictate alternative splicing patterns. Our results indicate that recognition of 3' splice sites involves different U2AF-like molecules, and that modulation of these general splicing factors can have profound effects on splicing.
机译:mRNA前剪接是基因表达中的关键步骤,正确识别剪接位点是该过程的重要组成部分。与共有序列的匹配较弱的剪接位点是常见的,尽管尚不清楚如何有效利用这些位点。使用体外剪接互补方法,我们确定PUF60为促进具有弱3'剪接位点的内含子剪接的因子。 PUF60与U2AF(65)具有同源性,U2AF(65)是一个一般的剪接因子,可在剪接体组装的早期阶段促进3'剪接位点的识别。我们证明PUF60可以在功能上替代U2AF(65)在体外,但两种蛋白质的存在强烈刺激了剪接。细胞中PUF60或U2AF(65)的减少会改变内源转录本的剪接模式,这与PUF60和U2AF(65)水平的调控可以决定其他剪接模式的想法一致。我们的结果表明,识别3'剪接位点涉及不同的U2AF样分子,并且对这些一般剪接因子的调节可对剪接产生深远的影响。

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