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首页> 外文期刊>Neuron >Tangentially Migrating Neurons Assemble a Primary Cilium that Promotes Their Reorientation to the Cortical Plate
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Tangentially Migrating Neurons Assemble a Primary Cilium that Promotes Their Reorientation to the Cortical Plate

机译:切向迁移的神经元组装一个主要的提示框,促进它们重新定向到皮质板

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摘要

In migrating neurons, the centrosome nucleates and anchors a polarized network of microtubules that directs organelle movements. We report here that the mother centriole of neurons migrating tangentially from the medial ganglionic eminence (MGE) assembles a short primary cilium and exposes this cilium to the cell surface by docking to the plasma membrane in the leading process. Primary cilia are built by intraflagellar transport (IFT), which is also required for Sonic hedgehog (Shh) signal transduction in vertebrates. We show that Shh pathway perturbations influenced the leading process morphology and dynamics of MGE cells. Whereas Shh favored the exit of MGE cells away from their tangential migratory paths in the developing cortex, cyclopamine or invalidation of IFT genes maintained MGE cells in the tangential paths. Our findings show that signals transmitted through the primary cilium promote the escape of future GABAergic interneurons from their tangential routes to colonize the cortical plate. Primary cilia control brain neurogenesis and morphogenesis by processing Shh signals. Baudoin et al. show that tangentially migrating neurons born in the basal forebrain assemble a primary cilium that process Shh signals important to control exit from their tangential routes.
机译:在迁移的神经元中,中心体形核并锚定了引导细胞器运动的微管极化网络。我们在这里报告,从内侧神经节隆起(MGE)切向迁移的神经元的母中心组装一个短的初级纤毛,并通过在领先的过程中与质膜对接而使纤毛暴露于细胞表面。初级纤毛是通过鞭毛内运输(IFT)建立的,脊椎动物的声波刺猬(Shh)信号转导也需要它。我们显示Shh通路扰动影响MGE细胞的领先过程形态和动力学。 Shh赞成在发育中的皮层中使MGE细胞远离其切向迁移路径,而环巴胺或IFT基因无效则使MGE细胞保持在切向路径中。我们的研究结果表明,通过初级纤毛传输的信号促进了未来GABA能神经元从其切线路径逃逸,从而定居在皮质板中。原发性纤毛通过处理Shh信号来控制大脑神经发生和形态发生。鲍杜恩等人。结果表明出生于基底前脑的切向迁移神经元组装了一个初级纤毛,该纤毛处理Shh信号对于控制其切向路径的退出很重要。

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    《Neuron》 |2012年第6期|共15页
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  • 正文语种 eng
  • 中图分类 神经病学;
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