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A Highlights from MBoC Selection: Cell cycle–regulated cortical dynein/dynactin promotes symmetric cell division by differential pole motion in anaphase

机译:MBoC选择的亮点:细胞周期调节的皮质动力蛋白/动力蛋白通过后期的极点运动促进对称的细胞分裂

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In cultured mammalian cells, how dynein/dynactin contributes to spindle positioning is poorly understood. To assess the role of cortical dynein/dynactin in this process, we generated mammalian cell lines expressing localization and affinity purification (LAP)–tagged dynein/dynactin subunits from bacterial artificial chromosomes and observed asymmetric cortical localization of dynein and dynactin during mitosis. In cells with asymmetrically positioned spindles, dynein and dynactin were both enriched at the cortex distal to the spindle. NuMA, an upstream targeting factor, localized asymmetrically along the cell cortex in a manner similar to dynein and dynactin. During spindle motion toward the distal cortex, dynein and dynactin were locally diminished and subsequently enriched at the new distal cortex. At anaphase onset, we observed a transient increase in cortical dynein, followed by a reduction in telophase. Spindle motion frequently resulted in cells entering anaphase with an asymmetrically positioned spindle. These cells gave rise to symmetric daughter cells by dynein-dependent differential spindle pole motion in anaphase. Our results demonstrate that cortical dynein and dynactin dynamically associate with the cell cortex in a cell cycle–regulated manner and are required to correct spindle mispositioning in LLC-Pk1 epithelial cells.
机译:在培养的哺乳动物细胞中,动力蛋白/动力蛋白如何促进纺锤体定位尚不清楚。为了评估皮质动力蛋白/动力蛋白在此过程中的作用,我们从哺乳动物人工染色体中生成表达定位和亲和纯化(LAP)标记的动力蛋白/动力蛋白亚基的哺乳动物细胞系,并观察有丝分裂期间动力蛋白和动力蛋白的皮质不对称定位。在纺锤体位置不对称的细胞中,动力蛋白和动力蛋白在纺锤体远端的皮质都富集。 NuMA(一种上游靶向因子)以类似于动力蛋白和动力蛋白的方式沿细胞皮质非对称定位。在纺锤向远端皮质运动的过程中,动力蛋白和动力蛋白局部减少,随后在新的远端皮质富集。在后期开始时,我们观察到皮质动力蛋白短暂增加,随后末期减少。纺锤运动经常导致细胞进入不对称的纺锤后期。这些细胞在后期通过动力蛋白依赖性的纺锤体极点运动产生对称的子细胞。我们的结果表明,皮质动力蛋白和动力蛋白以细胞周期调控的方式与细胞皮质动态缔合,是纠正LLC-Pk1上皮细胞纺锤体定位错误所必需的。

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