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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Biochemical identification of new proteins involved in splicing repression at the Drosophila P-element exonic splicing silencer
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Biochemical identification of new proteins involved in splicing repression at the Drosophila P-element exonic splicing silencer

机译:果蝇P元素外显子剪接沉默子参与剪接抑制的新蛋白的生化鉴定

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摘要

Splicing of the Drosophila P-element third intron (IVS3) is repressed in somatic tissues due to the function of an exonic splicing silencer (ESS) complex present on the 5' exon RNA. To comprehensively characterize the mechanisms of this alternative splicing regulation, we used biochemical fractionation and affinity purification to isolate the silencer complex assembled in vitro and identify the constituent proteins by mass spectrometry. Functional assays using splicing reporter minigenes identified the proteins hrp36 and hrp38 and the cytoplasmic poly(A)-binding protein PABPC1 as novel functional components of the splicing silencer. hrp48, PSI, and PABPC1 have high-affinity RNA-binding sites on the P-element IVS3 5' exon, whereas hrp36 and hrp38 proteins bind with low affinity to the P-element silencer RNA. RNA pull-down and immobilized protein assays showed that hrp48 protein binding to the silencerRNAcan recruit hrp36 and hrp38. These studies identified additional components that function at the P-element ESS and indicated that proteins with low-affinity RNA-binding sites can be recruited in a functional manner through interactions with a protein bound to RNA at a high-affinity binding site. These studies have implications for the role of heterogeneous nuclear ribonucleoproteins (hnRNPs) in the control of alternative splicing at cis-acting regulatory sites.
机译:果蝇P元素第三内含子(IVS3)的剪接由于5'外显子RNA上存在的外显子剪接沉默子(ESS)复合体的功能而在体细胞组织中受到抑制。为了全面表征这种选择性剪接调控的机制,我们使用了生化分离和亲和纯化来分离体外组装的沉默子复合物,并通过质谱鉴定出组成蛋白。使用剪接报道基因小基因的功能分析确定了蛋白hrp36和hrp38以​​及胞质聚(A)结合蛋白PABPC1是剪接沉默子的新功能组件。 hrp48,PSI和PABPC1在P元素IVS3 5'外显子上具有高亲和力RNA结合位点,而hrp36和hrp38蛋白则以低亲和力与P元素沉默子RNA结合。 RNA下拉和固定化蛋白分析表明,与沉默子RNA结合的hrp48蛋白可以募集hrp36和hrp38。这些研究确定了在P元素ESS上起作用的其他组件,并表明具有低亲和力RNA结合位点的蛋白可以通过与在高亲和力结合位点上结合RNA的蛋白相互作用而以功能方式募集。这些研究对异质核糖核蛋白(hnRNPs)在顺式作用调控位点选择性剪接的控制中具有重要意义。

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