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Boundary cap cells constrain spinal motor neuron somal migration at motor exit points by a semaphorin-plexin mechanism

机译:边界帽细胞通过Semaphorin-Plexin机制抑制运动出口点处的脊髓运动神经元体细胞迁移

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摘要

BackgroundIn developing neurons, somal migration and initiation of axon outgrowth often occur simultaneously and are regulated in part by similar classes of molecules. When neurons reach their final destinations, however, somal translocation and axon extension are uncoupled. Insights into the mechanisms underlying this process of disengagement came from our study of the behaviour of embryonic spinal motor neurons following ablation of boundary cap cells. These are neural crest derivatives that transiently reside at motor exit points, central nervous system (CNS):peripheral nervous system (PNS) interfaces where motor axons leave the CNS. In the absence of boundary cap cells, motor neuron cell bodies migrate along their axons into the periphery, suggesting that repellent signals from boundary cap cells regulate the selective gating of somal migration and axon outgrowth at the motor exit point. Here we used RNA interference in the chick embryo together with analysis of null mutant mice to identify possible boundary cap cell ligands, their receptors on motor neurons and cytoplasmic signalling molecules that control this process.
机译:背景技术在发育中的神经元中,体细胞迁移和轴突生长的启动通常同时发生,并且部分受到类似分子类别的调节。但是,当神经元到达其最终目的地时,体位易位和轴突延伸就没有耦合。脱离过程的机制的见解来自我们对边界帽细胞消融后胚胎脊髓运动神经元行为的研究。这些是神经c衍生物,它们瞬时驻留在运动出口点,中枢神经系统(CNS):周围神经系统(PNS)界面,运动轴突离开CNS。在没有边界帽细胞的情况下,运动神经元细胞体沿其轴突迁移到外周,这表明来自边界帽细胞的驱避信号调节了在运动出口点的体细胞迁移和轴突生长的选择性门控。在这里,我们使用了鸡胚中的RNA干扰以及对无效突变小鼠的分析,以确定可能的边界帽细胞配体,它们在运动神经元上的受体以及控制该过程的胞质信号分子。

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