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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Dendritic Eph organizes dendrodendritic segregation in discrete olfactory map formation in Drosophila
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Dendritic Eph organizes dendrodendritic segregation in discrete olfactory map formation in Drosophila

机译:树突式Eph组织Drosophila的离散嗅图地图形成中的树突状致偏析

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摘要

Proper function of the neural network results from the precise connections between axons and dendrites of presynaptic and postsynaptic neurons, respectively. In the Drosophila olfactory system, the dendrites of projection neurons (PNs) stereotypically target one of similar to 50 glomeruli in the antennal lobe (AL), the primary olfactory center in the brain, and form synapses with the axons of olfactory receptor neurons (ORNs). Here, we show that Eph and Ephrin, the well-known axon guidance molecules, instruct the dendrodendritic segregation during the discrete olfactory map formation. The Eph receptor tyrosine kinase is highly expressed and localized in the glomeruli related to reproductive behavior in the developing AL. In one of the pheromone-sensing glomeruli (DA1), the Eph cell-autonomously regulates its dendrites to reside in a single glomerulus by interacting with Ephrins expressed in adjacent PN dendrites. Our data demonstrate that the trans interaction between dendritic Eph and Ephrin is essential for the PN dendritic boundary formation in the DA1 olfactory circuit, potentially enabling strict segregation of odor detection between pheromones and the other odors.
机译:神经网络的适当功能分别来自突触前和后腹神经元的轴突与突触神经元之间的精确连接。在果蝇嗅觉系统中,投影神经元(PNS)的树突刻板靶向抗体叶(Al),脑中初级嗅觉中心的50肾小球,以及与嗅觉受体神经元的轴突形成突触(ORNS )。在这里,我们表明Eph和Ephrin,众所周知的轴突引导分子,在离散嗅图地图形成期间指示树突状差异。 Eph受体酪氨酸激酶高度表达和局部地局限于与显影AL中的生殖行为有关的肾小球。在该信息素感测的肾小球(DA1)之一中,Eph细胞 - 通过与在相邻的PN树枝状物中表达的ephrins相互作用,自主调节其树枝状物以在单一的肾小球中。我们的数据表明,树突式Eph和Ephrin之间的反式相互作用对于DA1嗅探电路中的PN树突边界形成是必不可少的,可能使能量检测的严格偏析信息素和其他气味。

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