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施万细胞的发育:从神经嵴到髓鞘

Schwann cell development: From neural crest to myelin sheath.

作者信息

Muppirala Anoohya N, Limbach Lauren E, Bradford Elisabeth F, Petersen Sarah C

机构信息

Program in Neuroscience, Harvard Medical School, Boston, Massachusetts, USA.

Department of Neuroscience, Kenyon College, Gambier, Ohio, USA.

出版信息

Wiley Interdiscip Rev Dev Biol. 2021 Sep;10(5):e398. doi: 10.1002/wdev.398. Epub 2020 Nov 3.

Abstract

Vertebrate nervous system function requires glial cells, including myelinating glia that insulate axons and provide trophic support that allows for efficient signal propagation by neurons. In vertebrate peripheral nervous systems, neural crest-derived glial cells known as Schwann cells (SCs) generate myelin by encompassing and iteratively wrapping membrane around single axon segments. SC gliogenesis and neurogenesis are intimately linked and governed by a complex molecular environment that shapes their developmental trajectory. Changes in this external milieu drive developing SCs through a series of distinct morphological and transcriptional stages from the neural crest to a variety of glial derivatives, including the myelinating sublineage. Cues originate from the extracellular matrix, adjacent axons, and the developing SC basal lamina to trigger intracellular signaling cascades and gene expression changes that specify stages and transitions in SC development. Here, we integrate the findings from in vitro neuron-glia co-culture experiments with in vivo studies investigating SC development, particularly in zebrafish and mouse, to highlight critical factors that specify SC fate. Ultimately, we connect classic biochemical and mutant studies with modern genetic and visualization tools that have elucidated the dynamics of SC development. This article is categorized under: Signaling Pathways > Cell Fate Signaling Nervous System Development > Vertebrates: Regional Development.

摘要

脊椎动物的神经系统功能需要神经胶质细胞,包括形成髓鞘的神经胶质细胞,它们包裹轴突并提供营养支持,使神经元能够有效地进行信号传导。在脊椎动物的外周神经系统中,神经嵴衍生的神经胶质细胞,即施万细胞(SCs),通过围绕单个轴突节段并反复包裹细胞膜来生成髓鞘。施万细胞的胶质生成和神经发生密切相关,并受塑造其发育轨迹的复杂分子环境的调控。这种外部环境的变化驱使发育中的施万细胞经历一系列不同的形态和转录阶段,从神经嵴发育为多种神经胶质衍生物,包括形成髓鞘的亚谱系。信号源自细胞外基质、相邻轴突和正在发育的施万细胞基膜,以触发细胞内信号级联反应和基因表达变化,从而确定施万细胞发育的阶段和转变。在这里,我们将体外神经元-神经胶质细胞共培养实验的结果与体内研究相结合,特别是对斑马鱼和小鼠施万细胞发育的研究,以突出决定施万细胞命运的关键因素。最终,我们将经典的生化和突变研究与现代遗传和可视化工具联系起来,这些工具阐明了施万细胞发育的动态过程。本文分类如下:信号通路>细胞命运信号传导;神经系统发育>脊椎动物:区域发育。

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