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Membrane Invaginations Reveal Cortical Sites that Pull on Mitotic Spindles in One-Cell C. elegans Embryos

机译:膜内陷揭示了拉动单细胞秀丽隐杆线虫胚胎中有丝分裂纺锤体的皮质位点。

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摘要

Asymmetric positioning of the mitotic spindle in C. elegans embryos is mediated by force-generating complexes that are anchored at the plasma membrane and that pull on microtubules growing out from the spindle poles. Although asymmetric distribution of the force generators is thought to underlie asymmetric positioning of the spindle, the number and location of the force generators has not been well defined. In particular, it has not been possible to visualize individual force generating events at the cortex. We discovered that perturbation of the acto-myosin cortex leads to the formation of long membrane invaginations that are pulled from the plasma membrane toward the spindle poles. Several lines of evidence show that the invaginations, which also occur in unperturbed embryos though at lower frequency, are pulled by the same force generators responsible for spindle positioning. Thus, the invaginations serve as a tool to localize the sites of force generation at the cortex and allow us to estimate a lower limit on the number of cortical force generators within the cell.
机译:秀丽隐杆线虫胚胎中有丝分裂纺锤体的不对称定位是由产生力的复合物介导的,该复合物锚定在质膜上并拉动从纺锤体极长出的微管。尽管认为力产生器的不对称分布是主轴不对称定位的基础,但力产生器的数量和位置尚未得到很好的定义。特别地,不可能在皮层上可视化各个力产生事件。我们发现,肌动蛋白-肌球蛋白皮层的扰动导致形成长的膜内陷,其从质膜被拉向纺锤极。几条证据表明,内陷也发生在不受干扰的胚胎中,尽管频率较低,但它们是由负责主轴定位的相同力产生器拉动的。因此,内陷是一种工具,用于在皮层定位力产生的部位,并允许我们估计细胞内皮层力产生器的数量的下限。

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