首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Protein trafficking mechanisms associated with neurite outgrowth and polarized sorting in neurons.
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Protein trafficking mechanisms associated with neurite outgrowth and polarized sorting in neurons.

机译:与神经突生长和神经元极化分类有关的蛋白质运输机制。

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摘要

Neuronal differentiation in vitro and in vivo involves coordinated changes in the cellular cytoskeleton and protein trafficking processes. I review here recent progress in our understanding of the membrane trafficking aspects of neurite outgrowth of neurons in culture and selective microtubule-based polarized sorting in fully polarized neurons, focusing on the involvement of some key molecules. Early neurite outgrowth appears to involve the protein trafficking machineries that are responsible for constitutive trans-Golgi network (TGN) to plasma membrane exocytosis, utilizing transport carrier generation mechanisms, SNARE proteins, Rab proteins and tethering mechanisms that are also found in non-neuronal cells. This vectorial TGN-plasma membrane traffic is directed towards several neurites, but can be switch to concentrate on the growth of a single axon. In a mature neuron, polarized targeting to the specific axonal and dendritic domains appears to involve selective microtubule-based mechanisms, utilizing motor proteins capable of distinguishing microtubule tracks to different destinations. The apparent gaps in our knowledge of these related protein transport processes will be highlighted.
机译:体外和体内神经元分化涉及细胞骨架和蛋白质运输过程的协调变化。我在这里回顾了我们对培养中神经元的神经突生长的膜运输方面以及在完全极化的神经元中基于选择性微管的极化分类的理解方面的最新进展,重点是一些关键分子的参与。早期神经突长出似乎涉及负责组成性跨高尔基网络(TGN)到质膜胞吐的蛋白质运输机制,利用了在非神经元细胞中也发现的转运载体生成机制,SNARE蛋白质,Rab蛋白质和束缚机制。 。这种矢量TGN-质膜运输是针对几个神经突,但可以切换到集中于单个轴突的生长。在成熟的神经元中,极化靶向特定的轴突和树突结构域似乎涉及选择性的基于微管的机制,利用能够区分微管轨迹到不同目的地的运动蛋白。我们对这些相关蛋白质转运过程的认识方面的明显差距将得到强调。

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