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Cell-Specific RNA Binding Protein Rbfox2 Regulates CaV2.2 mRNA Exon Composition and CaV2.2 Current Size

机译:细胞特异性RNA结合蛋白Rbfox2调节CaV2.2 mRNA外显子的组成和CaV2.2当前的大小

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摘要

The majority of multiexon mammalian genes contain alternatively spliced exons that have unique expression patterns in different cell populations and that have important cell functions. The expression profiles of alternative exons are controlled by cell-specific splicing factors that can promote exon inclusion or exon skipping but with few exceptions we do not know which specific splicing factors control the expression of alternatively spliced exons of known biological function. Many ion channel genes undergo extensive alternative splicing including Cacna1b that encodes the voltage-gated CaV2.2 α1 subunit. Alternatively spliced exon 18a in Cacna1b RNA encodes 21 amino acids in the II-III loop of CaV2.2, and its expression differs across the nervous system and over development. Genome-wide, protein-RNA binding analyses coupled to high-throughput RNA sequencing show that RNA binding Fox (Rbfox) proteins associate with CaV2.2 (Cacna1b) pre-mRNAs. Here, we link Rbfox2 to suppression of e18a. We show increased e18a inclusion in CaV2.2 mRNAs: (1) after siRNA knockdown of Rbfox2 in a neuronal cell line and (2) in RNA from sympathetic neurons of adult compared to early postnatal mice. By immunoprecipitation of Rbfox2-RNA complexes followed by qPCR, we demonstrate reduced Rbfox2 binding upstream of e18a in RNA from sympathetic neurons of adult compared to early postnatal mice. CaV2.2 currents in cell lines and in sympathetic neurons expressing only e18a-CaV2.2 are larger compared to currents from those expressing only Δ18a-CaV2.2. We conclude that Rbfox2 represses e18a inclusion during pre-mRNA splicing of CaV2.2, limiting the size of CaV2.2 currents early in development in certain neuronal populations.
机译:大多数多外显子哺乳动物基因都包含选择性剪接的外显子,这些外显子在不同细胞群体中具有独特的表达模式,并且具有重要的细胞功能。替代性外显子的表达谱受可促进外显子包涵或外显子跳跃的细胞特异性剪接因子控制,但除少数例外,我们不知道哪个特异性剪接因子控制已知生物学功能的替代性剪接外显子的表达。许多离子通道基因经历了广泛的选择性剪接,包括编码电压门控CaV2.2α1亚基的Cacna1b。另外,Cacna1b RNA中的剪接外显子18a在CaV2.2的II-III环中编码21个氨基酸,其表达在整个神经系统和发育过程中均不同。全基因组的蛋白质-RNA结合分析与高通量RNA测序相结合,显示RNA结合Fox(Rbfox)蛋白与CaV2.2(Cacna1b)前mRNA缔合。在这里,我们将Rbfox2链接到e18a的抑制。我们显示增加的e18a包含在CaV2.2 mRNA中:(1)与早期产后小鼠相比,在神经元细胞系中Rbfox2的siRNA敲低和(2)成年交感神经元的RNA中。通过免疫沉淀Rbfox2-RNA复合物,然后进行qPCR,我们证明与成年早期小鼠相比,成年交感神经元RNA中e18a上游的Rbfox2结合减少。与仅表达Δ18a-CaV2.2的电流相比,仅表达e18a-CaV2.2的细胞系和交感神经元中的CaV2.2电流更大。我们得出结论,Rbfox2在CaV2.2的前mRNA剪接过程中抑制e18a包含,从而限制了某些神经元群体中早期发育的CaV2.2电流的大小。

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