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Regulated Alternative Splicing of Drosophila Dscam2 Is Necessary for Attaining the Appropriate Number of Photoreceptor Synapses

机译:果蝇Dscam2调控的选择性剪接是获得适当数量的感光突触所必需的。

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摘要

How the brain makes trillions of synaptic connections using a genome of only 20,000 genes is a major question in modern neuroscience. Alternative splicing is one mechanism that can increase the number of proteins produced by each gene, but its role in regulating synapse formation is poorly understood. In Drosophila, photoreceptors form a synapse with multiple postsynaptic elements including lamina neurons L1 and L2. L1 and L2 express distinct isoforms of the homophilic repulsive protein Dscam2, and since these isoforms cannot bind to each other, cell-specific expression has been proposed to be necessary for preventing repulsive interactions that could disrupt the synapse. Here, we show that the number of synapses are reduced in flies that express only one isoform, and L1 and L2 dendritic morphology is perturbed. We propose that these defects result from inappropriate interactions between L1 and L2 dendrites. We conclude that regulated Dscam2 alternative splicing is necessary for the proper assembly of photoreceptor synapses.
机译:大脑如何使用仅20,000个基因的基因组建立数万亿个突触连接,这是现代神经科学中的一个主要问题。选择性剪接是一种可以增加每个基因产生的蛋白质数量的机制,但人们对其调节突触形成的作用了解甚少。在果蝇中,光感受器与包括板层神经元L1和L2在内的多个突触后元件形成突触。 L1和L2表达同型排斥蛋白Dscam2的不同同工型,并且由于这些同工型不能彼此结合,因此提出了细胞特异性表达对于防止可能破坏突触的排斥性相互作用是必需的。在这里,我们表明,只表达一种同工型的果蝇中突触的数量减少,并且L1和L2树突形态受到干扰。我们建议这些缺陷是由于L1和L2树突之间的不适当相互作用引起的。我们得出结论,受规管的Dscam2选择性剪接对于感光器突触的正确组装是必要的。

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