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Oriented cell divisions in epithelia: from force generation to force anisotropy by tension, shape and vertices

机译:上皮内的导向细胞分裂:从力生成强制张力,形状和顶点强制各向异性

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Mitotic spindle orientation has been linked to asymmetric cell divisions, tissue morphogenesis and homeostasis. The canonical pathway to orient the mitotic spindle is composed of the cortical recruitment factor NuMA and the molecular motor dynein, which exerts pulling forces on astral microtubules to orient the spindle. Recent work has defined a novel role for NuMA as a direct contributor to force generation. In addition, the exploration of geometrical and physical cues combined with the study of classical polarity pathways has led to deeper insights into the upstream regulation of spindle orientation. Here, we focus on how cell shape, junctions and mechanical tension act to orient spindle pulling forces in epithelia, and discuss different roles for spindle orientation in epithelia.
机译:有丝分裂主轴取向已与不对称细胞分裂,组织形态发生和稳态相关联。 定向有丝分裂主轴的规范途径由皮质募集因子NUMA和分子发动剂量组成,其在星形微管上施加拉力以定向主轴。 最近的工作已经确定了NUMA作为强制产生的直接贡献者的新颖作用。 此外,与经典极性途径的研究相结合的几何和物理提示的探索导致了对主轴取向的上游调节更深入的洞察。 在这里,我们专注于蜂窝形状,交叉点和机械张力如何在上皮细胞中定向主轴拉力,并讨论上皮内梭形方向的不同作用。

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