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Cell shape and cell division.

机译:细胞形状和细胞分裂。

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The correlation between cell shape elongation and the orientation of the division axis described by early cell biologists is still used as a paradigm in developmental studies. However, analysis of early embryo development and tissue morphogenesis has highlighted the role of the spatial distribution of cortical cues able to guide spindle orientation. In vitro studies of cell division have revealed similar mechanisms. Recent data support the possibility that the orientation of cell division in mammalian cells is dominated by cell adhesion and the associated traction forces developed in interphase. Cell shape is a manifestation of these adhesive and tensional patterns. These patterns control the spatial distribution of cortical signals and thereby guide spindle orientation and daughter cell positioning. From these data, cell division appears to be a continuous transformation ensuring the maintenance of tissue mechanical integrity.
机译:早期细胞生物学家描述的细胞形状伸长与分裂轴方向之间的相关性仍被用作发展研究的范例。然而,对早期胚胎发育和组织形态发生的分析突出了能够指导纺锤定向的皮质提示的空间分布的作用。细胞分裂的体外研究揭示了相似的机制。最近的数据支持了哺乳动物细胞中细胞分裂的方向受细胞粘附和相间发展的相关牵引力支配的可能性。孔的形状是这些粘附和张力模式的表现。这些模式控制皮层信号的空间分布,从而指导纺锤体定向和子细胞定位。从这些数据来看,细胞分裂似乎是一种连续的转化,可确保维持组织机械完整性。

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