Establishing neuronal polarity: microtubule regulation during neurite initiation.

Oxford open neuroscience Pub Date : 2022-05-13 eCollection Date: 2022-01-01 DOI:10.1093/oons/kvac007
Victoria E Higgs, Raman M Das
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Abstract

The initiation of nascent projections, or neurites, from the neuronal cell body is the first stage in the formation of axons and dendrites, and thus a critical step in the establishment of neuronal architecture and nervous system development. Neurite formation relies on the polarized remodelling of microtubules, which dynamically direct and reinforce cell shape, and provide tracks for cargo transport and force generation. Within neurons, microtubule behaviour and structure are tightly controlled by an array of regulatory factors. Although microtubule regulation in the later stages of axon development is relatively well understood, how microtubules are regulated during neurite initiation is rarely examined. Here, we discuss how factors that direct microtubule growth, remodelling, stability and positioning influence neurite formation. In addition, we consider microtubule organization by the centrosome and modulation by the actin and intermediate filament networks to provide an up-to-date picture of this vital stage in neuronal development.

神经元极性的建立:神经突形成过程中的微管调节
神经元细胞体新生突起或轴突的起始是轴突和树突形成的第一阶段,因此是建立神经元结构和神经系统发育的关键步骤。Neurite的形成依赖于微管的极化重塑,微管动态地引导和增强细胞形状,并为货物运输和力的产生提供轨道。在神经元中,微管的行为和结构受到一系列调节因子的严格控制。尽管人们对轴突发育后期的微管调节相对了解,但很少研究微管在轴突起始过程中是如何调节的。在这里,我们讨论了指导微管生长、重塑、稳定性和定位的因素如何影响轴突的形成。此外,我们还考虑了中心体的微管组织,以及肌动蛋白和中间丝网络的调节,以提供神经元发育这一重要阶段的最新情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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