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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Kinesin heavy chain function in Drosophila glial cells controls neuronal activity
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Kinesin heavy chain function in Drosophila glial cells controls neuronal activity

机译:果蝇神经胶质细胞中的驱动蛋白重链功能控制神经元活动

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摘要

Kinesin heavy chain (Khc) is crucially required for axonal transport and khc mutants show axonal swellings and paralysis. Here, we demonstrate that in Drosophila khc is equally important in glial cells. Glial-specific down regulation of khc by RNA interference suppresses neuronal excitability and results in spastic flies. The specificity of the phenotype was verified by interspecies rescue experiments and further mutant analyses. Khc is mostly required in the sub perineurial glia forming the blood-brain barrier. Following glial-specific knockdown, peripheral nerves are swollen with maldistributed mitochondria. To better understand khc function, we determined Khc-dependent Rab proteins in glia and present evidence that Neurexin IV, a well known blood-brain barrier constituent, is one of the relevant cargo proteins. Our work shows that the role of Khc for neuronal excitability must be considered in the light of its necessity for directed transport in glia.
机译:驱动蛋白重链(Khc)是轴突运输的关键条件,khc突变体显示轴突肿胀和麻痹。在这里,我们证明在果蝇中khc在神经胶质细胞中同样重要。 RNA干扰对神经胶质细胞的神经胶质特异性下调抑制了神经元的兴奋性并导致了苍蝇。通过种间拯救实验和进一步的突变分析证实了该表型的特异性。在形成血脑屏障的会后尿道神经胶质细胞中最需要Khc。特定于神经胶质的击倒后,周围神经肿胀,线粒体分布不均。为了更好地了解khc功能,我们确定了神经胶质细胞中Khc依赖性的Rab蛋白,并提供了证据表明Neurexin IV(一种众所周知的血脑屏障成分)是相关的货运蛋白之一。我们的工作表明,必须根据神经胶质中定向运输的必要性来考虑Khc在神经元兴奋性中的作用。

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