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Fox-3 and PSF interact to activate neural cell-specific alternative splicing

机译:Fox-3和PSF相互作用以激活特定于神经细胞的选择性剪接

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Fox-1 family (Fox) proteins, which consist of Fox-1 (A2BP1), Fox-2 (Rbm9) and Fox-3 (NeuN) in mammals, bind to the RNA element UGCAUG and regulate alternative pre-mRNA splicing. However the mechanisms for Fox-regulated splicing are largely unknown. We analyzed the expression pattern of the three Fox proteins as well as neural cell-specific alternative splicing of a cassette exon N30 of nonmuscle myosin heavy chain (NMHC) II-B in the mouse central nervous system. Histological and biochemical analyses following fluorescence-activated cell sorting demonstrate a positive correlation of N30 inclusion and Fox-3 expression. Further, we identified polypyrimidine tract binding protein-associated splicing factor (PSF) as an interacting protein with Fox-3 by affinity-chromatography. In cultured cells, enhancement of N30 inclusion by Fox-3 depends on the presence of PSF. PSF enhances N30 inclusion in a UGCAUG-dependent manner, although it does not bind directly to this element. Fox-3 is recruited to the UGCAUG element downstream of N30 in the endogenous NMHC II-B transcript in a PSF-dependent manner. This study is the first to identify PSF as a coactivator of Fox proteins and provides evidence that the Fox-3 and PSF interaction is an integral part of the mechanism by which Fox proteins regulate activation of alternative exons via a downstream intronic enhancer.
机译:在哺乳动物中,由Fox-1(A2BP1),Fox-2(Rbm9)和Fox-3(NeuN)组成的Fox-1家族(Fox)蛋白与RNA元件UGCAUG结合并调节mRNA的可变剪接。但是,Fox调节拼接的机制很大程度上未知。我们分析了三种Fox蛋白的表达模式,以及小鼠中枢神经系统中非肌肉肌球蛋白重链(NMHC)II-B的盒式外显子N30的神经细胞特异性替代剪接。荧光激活细胞分选后的组织学和生化分析表明,N30包涵体与Fox-3表达呈正相关。此外,我们通过亲和层析鉴定了与嘧啶束结合蛋白相关的剪接因子(PSF)为与Fox-3的相互作用蛋白。在培养的细胞中,Fox-3对N30包涵体的增强取决于PSF的存在。 PSF以UGCAUG依赖的方式增强N30的包容性,尽管它不直接与该元素结合。 Fox-3以PSF依赖性方式被内源NMHC II-B转录物募集到N30下游的UGCAUG元件。这项研究是第一个鉴定PSF为Fox蛋白的共激活因子的研究,并提供了Fox-3和PSF相互作用是Fox蛋白通过下游内含子增强子调节其他外显子激活机制的有机组成部分的证据。

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