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首页> 外文期刊>Trends in Neurosciences >Molecular layers underlying cytoskeletal remodelling during cortical development.
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Molecular layers underlying cytoskeletal remodelling during cortical development.

机译:皮质发育过程中细胞骨架重塑的分子层。

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摘要

During neural development, the cytoskeleton of newborn neurons undergoes extensive and dynamic remodelling to facilitate the sequential steps of neurogenesis, cell migration and terminal differentiation. It is clear from studying the mechanisms that precipitate these functions that different configurations of the cytoskeleton prefigure the correct execution of each step and define cohorts of proteins the functions of which are indispensable for the control of neuronal migration but not terminal differentiation. These combinatorial protein functions are also predetermined by regulated gene expression and the precise subcellular localisation of their protein products. Here, we expand on this view in the context of recent data on how the cytoskeleton is regulated during the maturation of cortical neurons within the developing brain.
机译:在神经发育过程中,新生神经元的细胞骨架经历广泛而动态的重塑,以促进神经发生,细胞迁移和终末分化的顺序步骤。通过研究沉淀这些功能的机制可以清楚地看出,不同骨架的构型预示了每个步骤的正确执行,并定义了蛋白质组,其功能对于控制神经元迁移必不可少,但并非终末分化。这些组合蛋白的功能还可以通过调节的基因表达及其蛋白产物的精确亚细胞定位来预先确定。在这里,我们在有关大脑大脑皮层神经元成熟过程中如何调节细胞骨架的最新数据的背景下,对这种观点进行了扩展。

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