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Cell-Specific Alternative Splicing of Drosophila Dscam2 Is Crucial for Proper Neuronal Wiring

机译:果蝇Dscam2的特定于细胞的选择性剪接对于正确的神经元接线至关重要

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How a finite number of genes specify a seemingly infinite number of neuronal connections is a central question in neurobiology. Alternative splicing has been proposed to increase proteome diversity in the brain. Here we show that cell-specific alternative splicing of a cell-surface protein is crucial for neuronal wiring. Down syndrome cell adhesion molecule 2 (Dscam2) is a conserved homophilic binding protein that can induce repulsion between opposing neurons. In the fly visual system, L1 and L2 neurons both require Dscam2 repulsion, but paradoxically, they also physically contact each other. We found that the cell-specific expression of two biochemically distinct alternative isoforms of Dscam2 prevents these cells from repelling each other. Phenotypes were observed in the axon terminals of L1 and L2 when they expressed the incorrect isoform, demonstrating a requirement for distinct isoforms. We conclude that cell-specific alternative splicing is a mechanism for achieving proper connectivity between neurons.
机译:有限数量的基因如何指定看似无限数量的神经元连接是神经生物学的中心问题。已经提出了选择性剪接以增加脑中蛋白质组的多样性。在这里,我们显示细胞表面蛋白的细胞特异性替代剪接对于神经元接线至关重要。唐氏综合症细胞粘附分子2(Dscam2)是一种保守的同源结合蛋白,可以诱导相对神经元之间的排斥。在飞行视觉系统中,L1和L2神经元都需要Dscam2排斥,但自相矛盾的是,它们也彼此物理接触。我们发现,Dscam2的两个生物化学上不同的替代同工型的细胞特异性表达可防止这些细胞相互排斥。 L1和L2的轴突末端表达不正确的同工型时观察到表型,表明需要不同的同工型。我们得出结论,特定于细胞的选择性剪接是一种在神经元之间实现正确连接的机制。

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