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Polo-like kinase 1 phosphorylation of p150Glued facilitates nuclear envelope breakdown during prophase

机译:p150Glued的Polo样激酶1磷酸化促进前期的核膜破裂

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摘要

Nuclear envelope breakdown (NEBD) is an essential step during the G2/M transition in higher eukaryotic cells. Increasing evidence supports the notion that both microtubules and microtubule-associated motor proteins are critical regulators of NEBD. Although it has been described that p150Glued, the major component of the dynein/dynactin complex, localizes in the nuclear envelope during prophase, the exact role of p150Glued and its regulation during NEBD are largely elusive. Polo-like kinase 1 (Plk1), the best characterized Ser/Thr kinase, is involved in mitotic entry in several systems; however, the targets of Plk1 during NEBD are unknown. Herein, we show that in mammalian cells both Plk1 and p150Glued regulate NEBD and that Plk1 interacts with and phosphoryates p150Glued during NEBD at prophase. Using various approaches, we showed that Plk1 phosphorylates p150Glued at Ser-179 and that the pS179 epitope is generated at the nuclear envelope of prophase cells. Significantly, Plk1-mediated phosphorylation of p150Glued at Ser-179 positively regulates its accumulation at the nuclear envelope during prophase. Finally, we found that cells expressing the Plk1-unphosphorylatable mutant (p150Glued-S179A) arrest at G2, as indicated by reduced NEBD, increased levels of cyclin B and phospho-H3, but a decreased level of Cdc2 kinase activity. Taking these data together, we conclude that Plk1 phosphorylation of p150Glued might be one major pathway of NEBD regulation.
机译:核被膜破坏(NEBD)是高等真核细胞在G2 / M过渡过程中的重要步骤。越来越多的证据支持以下观点:微管和与微管相关的运动蛋白都是NEBD的关键调节因子。尽管已经描述了动力蛋白/动力蛋白复合物的主要成分p150 Glued 在前期位于核膜中,p150 Glued 的确切作用及其调控NEBD期间基本上难以捉摸。 Polo样激酶1(Plk1)是最有特色的Ser / Thr激酶,参与多个系统的有丝分裂进入。但是,NEBD期间Plk1的目标未知。本文显示,在哺乳动物细胞中,Plk1和p150 Glued 均调节NEBD,并且Plk1在前期NEBD期间与p150 Glued 相互作用并使其磷酸化。使用各种方法,我们显示Plk1在Ser-179磷酸化p150 Glued ,而pS179表位在前期细胞的核膜上产生。值得注意的是,Plk1介导的p150 Glued 在Ser-179处的磷酸化在前期正调控着其在核膜的积累。最后,我们发现表达Plk1-不可磷酸化突变体(p150 Glued -S179A)的细胞停滞在G2,其表现为NEBD降低,细胞周期蛋白B和磷酸化H3的水平升高,但磷酸化H3的水平降低Cdc2激酶活性。综合这些数据,我们得出结论,p150 Glued 的Plk1磷酸化可能是NEBD调控的主要途径之一。

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