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Polo样激酶1与有丝分裂驱动蛋白样蛋白CHO1/MKLP-1的分子相互作用。

Molecular interactions of Polo-like-kinase 1 with the mitotic kinesin-like protein CHO1/MKLP-1.

作者信息

Liu Xiaoqi, Zhou Tianhua, Kuriyama Ryoko, Erikson Raymond L

机构信息

Department of Molecular and Cellular Biology, Harvard University, 16 Divinity Avenue, Cambridge, MA 02138, USA.

出版信息

J Cell Sci. 2004 Jul 1;117(Pt 15):3233-46. doi: 10.1242/jcs.01173. Epub 2004 Jun 15.

Abstract

Polo-like kinases and kinesin-like motor proteins are among the many proteins implicated in the execution of cytokinesis. Polo-like-kinase 1 (Plk1) interacts with the mitotic kinesin-like motor protein CHO1/MKLP-1 during anaphase and telophase, and CHO1/MKLP-1 is a Plk1 substrate in vitro. Here, we explore the molecular interactions of these two key contributors to mitosis and cytokinesis. Using the transient transfection approach, we show that the C-terminus of Plk1 binds CHO1/MKLP-1 in a Polo-box-dependent manner and that the stalk domain of CHO1/MKLP-1 is responsible for its binding to Plk1. The stalk domain was found to localize with Plk1 to the mid-body, and Plk1 appears to be mislocalized in CHO1/MKLP-1-depleted cells during late mitosis. We showed that Ser904 and Ser905 are two major Plk1 phosphorylation sites. Using the vector-based RNA interference approach, we showed that depletion of CHO1/MKLP-1 causes the formation of multinucleate cells with more centrosomes, probably because of a defect in the early phase of cytokinesis. Overexpression of a non-Plk1-phosphorylatable CHO1 mutant caused cytokinesis defects, presumably because of dominant negative effect of the construct. Finally, CHO1-depletion-induced multinucleation could be partially rescued by co-transfection of a non-degradable hamster wild-type CHO1 construct, but not an unphosphorylatable mutant. These data provide more detailed information about the interaction between Plk1 and CHO1/MKLP-1, and the significance of this is discussed.

摘要

Polo样激酶和驱动蛋白样运动蛋白是众多与胞质分裂执行相关的蛋白质。Polo样激酶1(Plk1)在后期和末期与有丝分裂驱动蛋白样运动蛋白CHO1/MKLP-1相互作用,并且CHO1/MKLP-1在体外是Plk1的底物。在这里,我们探讨这两种有丝分裂和胞质分裂关键贡献者之间的分子相互作用。使用瞬时转染方法,我们表明Plk1的C末端以Polo盒依赖的方式结合CHO1/MKLP-1,并且CHO1/MKLP-1的茎结构域负责其与Plk1的结合。发现茎结构域与Plk1共定位于中体,并且在有丝分裂后期Plk1在CHO1/MKLP-1缺失的细胞中似乎定位错误。我们表明Ser904和Ser905是两个主要的Plk1磷酸化位点。使用基于载体的RNA干扰方法,我们表明CHO1/MKLP-1的缺失导致具有更多中心体的多核细胞的形成,这可能是由于胞质分裂早期的缺陷。非Plk1可磷酸化的CHO1突变体的过表达导致胞质分裂缺陷,推测是由于该构建体的显性负效应。最后,通过共转染不可降解的仓鼠野生型CHO1构建体可以部分挽救CHO1缺失诱导的多核化,但不能挽救不可磷酸化的突变体。这些数据提供了关于Plk1与CHO1/MKLP-1之间相互作用的更详细信息,并讨论了其意义。

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