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Elasticity-based boosting of neuroepithelial nucleokinesis via indirect energy transfer from mother to daughter

机译:通过从母体到女儿的间接能量转移基于弹性的神经上皮细胞核动力学增强

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摘要

Neural progenitor cells (NPCs), which are apicobasally elongated and densely packed in the developing brain, systematically move their nuclei/somata in a cell cycle–dependent manner, called interkinetic nuclear migration (IKNM): apical during G2 and basal during G1. Although intracellular molecular mechanisms of individual IKNM have been explored, how heterogeneous IKNMs are collectively coordinated is unknown. Our quantitative cell-biological and in silico analyses revealed that tissue elasticity mechanically assists an initial step of basalward IKNM. When the soma of an M-phase progenitor cell rounds up using actomyosin within the subapical space, a microzone within 10 μm from the surface, which is compressed and elastic because of the apical surface’s contractility, laterally pushes the densely neighboring processes of non–M-phase cells. The pressed processes then recoil centripetally and basally to propel the nuclei/somata of the progenitor’s daughter cells. Thus, indirect neighbor-assisted transfer of mechanical energy from mother to daughter helps efficient brain development.
机译:神经祖细胞(APC)呈顶突伸长并密集地聚集在发育中的大脑中,以依赖细胞周期的方式系统性地移动其核/气孔,称为运动核迁移(IKNM):在G2时为顶端,在G1时为基础。尽管已探索了单个IKNM的细胞内分子机制,但如何异质地协调IKNM仍是未知的。我们的定量细胞生物学和计算机模拟分析表明,组织弹性在机械上有助于基础IKNM的初始步骤。当使用肌动球蛋白在根尖下空间内将M期祖细胞的体部聚集起来时,离表面10μm以内的微区由于根尖表面的可收缩性而被压缩并具有弹性,从而侧向推动非M的密集相邻过程相电池。然后,受压的过程向心和基向后退,以推动祖细胞的细胞核/气孔。因此,间接的邻居辅助的机械能从母亲到女儿的转移有助于有效的大脑发育。

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