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Mechanisms of activation and repression by the alternative splicing factors RBFOX1/2.

机译:可变剪接因子RBBFX1 / 2激活和抑制的机制。

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RBFOX1 and RBFOX2 are alternative splicing factors that are predominantly expressed in the brain and skeletal muscle. They specifically bind the RNA element UGCAUG, and regulate alternative splicing positively or negatively in a position-dependent manner. The molecular basis for the position dependence of these and other splicing factors on alternative splicing of their targets is not known. We explored the mechanisms of RBFOX splicing activation and repression using an MS2-tethering assay. We found that the Ala/Tyr/Gly-rich C-terminal domain is sufficient for exon activation when tethered to the downstream intron, whereas both the C-terminal domain and the central RRM are required for exon repression when tethered to the upstream intron. Using immunoprecipitation and mass spectrometry, we identified hnRNP H1, RALY, and TFG as proteins that specifically interact with the C-terminal domain of RBFOX1 and RBFOX2. RNA interference experiments showed that hnRNP H1 and TFG modulate the splicing activity of RBFOX1/2, whereas RALY had no effect. However, TFG is localized in the cytoplasm, and likely modulates alternative splicing indirectly.
机译:RBFOX1和RBFOX2是主要在大脑和骨骼肌中表达的其他剪接因子。它们特异性结合RNA元件UGCAUG,并以依赖位置的方式正向或负向调节选择性剪接。这些和其他剪接因子对它们靶标的选择性剪接的位置依赖性的分子基础是未知的。我们探索了使用MS2系留测定的RBFOX剪接激活和抑制的机制。我们发现,富含Ala / Tyr / Gly的C末端域在拴系到下游内含子时足以激活外显子,而当拴系到上游内含子时,C末端域和中央RRM都需要进行外显子抑制。使用免疫沉淀和质谱法,我们确定hnRNP H1,RALY和TFG是与RBFOX1和RBFOX2的C末端域特异性相互作用的蛋白质。 RNA干扰实验表明,hnRNP H1和TFG调节RBFOX1 / 2的剪接活性,而RALY没有作用。但是,TFG位于细胞质中,并可能间接调节替代剪接。

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