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首页> 外文期刊>Journal of Cell Science >Calcium signaling mediates five types of cell morphological changes to form neural rosettes
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Calcium signaling mediates five types of cell morphological changes to form neural rosettes

机译:钙信号传导介导五种类型的细胞形态变化,形成神经玫瑰花属

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摘要

Neural rosette formation is a critical morphogenetic process during neural development, whereby neural stem cells are enclosed in rosette niches to equipoise proliferation and differentiation. How neural rosettes form and provide a regulatory micro-environment remains to be elucidated. We employed the human embryonic stem cell-based neural rosette system to investigate the structural development and function of neural rosettes. Our study shows that neural rosette formation consists of five types of morphological change: intercalation, constriction, polarization, elongation and lumen formation. Ca2+ signaling plays a pivotal role in the five steps by regulating the actions of the cytoskeletal complexes, actin, myosin II and tubulin during intercalation, constriction and elongation. These, in turn, control the polarizing elements, ZO-1, PARD3 and beta-catenin during polarization and lumen production for neural rosette formation. We further demonstrate that the dismantlement of neural rosettes, mediated by the destruction of cytoskeletal elements, promotes neurogenesis and astrogenesis prematurely, indicating that an intact rosette structure is essential for orderly neural development.
机译:神经莲座形成是神经发育过程中的关键形态发生过程,由此神经干细胞封闭在莲座氏菌塞中以易于增殖和分化。神经玫瑰花玫瑰花如何形成和提供监管微环境仍有待阐明。我们雇用了人胚胎干细胞的神经莲座系统,探讨了神经玫瑰花的结构发展和功能。我们的研究表明,神经莲座形成由五种类型的形态变化组成:嵌入,收缩,极化,伸长率和腔形成。 CA2 +信号传导通过调节嵌入,收缩和伸长率的细胞骨骼复合物,肌动蛋白,肌蛋白II和微管蛋白的动作在五个步骤中起着枢轴作用。反过来,这些反相控制偏振元素,ZO-1,PARD3和β-连环蛋白,用于神经莲座形成的偏振和腔生产。我们进一步证明,通过破坏细胞骨架元素的破坏介导的神经玫瑰花结节的拆除过早地促进神经发生和星星,表明完整的莲座结构对于有序神经发育至关重要。

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