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Analysis of in situ pre-mRNA targets of human splicing factor SF1 reveals a function in alternative splicing

机译:人类剪接因子SF1的原位mRNA靶标分析揭示了选择性剪接中的功能

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The conserved pre-mRNA splicing factor SF1 is implicated in 3' splice site recognition by binding directly to the intron branch site. However, because SF1 is not essential for constitutive splicing, its role in pre-mRNA processing has remained mysterious. Here, we used crosslinking and immunoprecipitation (CLIP) to analyze short RNAs directly bound by human SF1 in vivo. SF1 bound mainly pre-mRNAs, with 77% of target sites in introns. Binding to target RNAs in vitro was dependent on the newly defined SF1 binding motif ACUNAC, strongly resembling human branch sites. Surprisingly, the majority of SF1 binding sites did not map to the expected position near 3' splice sites. Instead, target sites were distributed throughout introns, and a smaller but significant fraction occurred in exons within coding and untranslated regions. These data suggest a more complex role for SF1 in splicing regulation. Indeed, SF1 silencing affected alternative splicing of endogenous transcripts, establishing a previously unexpected role for SF1 and branch site-like sequences in splice site selection.
机译:通过直接结合内含子分支位点,保守的mRNA前剪接因子SF1参与了3'剪接位点的识别。但是,由于SF1对于组成性剪接不是必需的,因此其在mRNA加工前的作用一直是个谜。在这里,我们使用交联和免疫沉淀(CLIP)分析体内人SF1直接结合的短RNA。 SF1主要结合前mRNA,内含子中有77%的目标位点。在体外与靶RNA的结合依赖于新定义的SF1结合基序ACUNAC,与人类分支位点非常相似。出人意料的是,大多数SF1结合位点未映射到3'剪接位点附近的预期位置。相反,靶位点分布在整个内含子中,较小但重要的部分发生在编码区和非翻译区的外显子中。这些数据表明SF1在剪接调控中的作用更为复杂。确实,SF1沉默影响内源性转录物的选择性剪接,从而在剪接位点选择中为SF1和分支位点样序列建立了以前未曾预料的作用。

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