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A novel human protein of the maternal centriole is required for the final stages of cytokinesis and entry into S phase

机译:胞质分裂的最后阶段和进入S期需要一种新的人类孕激素中心蛋白

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摘要

Centrosomes nucleate microtubules and contribute to mitotic spindle organization and function. They also participate in cytokinesis and cell cycle progression in ways that are poorly understood. Here we describe a novel human protein called centriolin that localizes to the maternal centriole and functions in both cytokinesis and cell cycle progression. Centriolin silencing induces cytokinesis failure by a novel mechanism whereby cells remain interconnected by long intercellular bridges. Most cells continue to cycle, reenter mitosis, and form multicellular syncytia. Some ultimately divide or undergo apoptosis specifically during the protracted period of cytokinesis. At later times, viable cells arrest in G1/G0. The cytokinesis activity is localized to a centriolin domain that shares homology with Nud1p and Cdc11p, budding and fission yeast proteins that anchor regulatory pathways involved in progression through the late stages of mitosis. The Nud1p-like domain of centriolin binds Bub2p, another component of the budding yeast pathway. We conclude that centriolin is required for a late stage of vertebrate cytokinesis, perhaps the final cell cleavage event, and plays a role in progression into S phase.
机译:中心体使微管成核并有助于有丝分裂纺锤体的组织和功能。他们还以人们不了解的方式参与胞质分裂和细胞周期进程。在这里,我们描述了一种新型的人类蛋白,称为百脑蛋白,其定位于母亲的中心体,并在胞质分裂和细胞周期进程中起作用。 Centriolin沉默通过一种新的机制诱导胞质分裂失败,从而使细胞通过长的细胞间桥保持相互连接。大多数细胞继续循环,重新进入有丝分裂,并形成多细胞合胞体。一些细胞最终在细胞分裂的延长期内最终分裂或经历凋亡。以后,存活细胞停滞在G1 / G0中。胞质分裂活性被定位在与Nud1p和Cdc11p,出芽和裂变酵母蛋白具有同源性的中心蛋白域上,这些蛋白锚定了参与有丝分裂晚期的调控途径。百里香素的Nud1p样域结合Bub2p,这是发芽酵母途径的另一个组成部分。我们得出的结论是,百里珠蛋白是脊椎动物胞质分裂后期(可能是最终的细胞裂解事件)所必需的,并且在进入S期过程中发挥作用。

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