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人类纺锤体检查点激酶Mps1的动粒定位及与微管的相互作用

Kinetochore localization and microtubule interaction of the human spindle checkpoint kinase Mps1.

作者信息

Stucke Volker M, Baumann Christoph, Nigg Erich A

机构信息

Department of Cell Biology, Max Planck Institute for Biochemistry, Am Klopferspitz 18, 82152 Martinsried, Germany.

出版信息

Chromosoma. 2004 Aug;113(1):1-15. doi: 10.1007/s00412-004-0288-2. Epub 2004 Jul 3.

Abstract

Members of the Mps1 protein kinase family have been implicated in the regulation of the kinetochore-mediated spindle assembly checkpoint in species ranging from yeast to man. However, conflicting data have been reported on the subcellular localization of vertebrate Mps1 kinases and their possible roles in centrosome duplication. Moreover, little is presently known about the regulation of Mps1 kinases during the cell cycle. Here, we have used immunofluorescence microscopy, immunoblotting and siRNA-mediated depletion of hMps1 to re-investigate the subcellular localization of this kinase. Our data confirm the kinetochore association of hMps1 but suggest that the centrosome staining produced by some anti-hMps1 antibodies could be due to cross-reactivity with other proteins. We also show that the kinetochore association of hMps1 is mediated by the amino-terminal, non-catalytic domain and specifically requires the presence of the Hec1/Ndc80-Nuf2 complex at the kinetochore. Finally, we have combined in vitro binding studies and kinase assays to explore the influence of microtubules on hMps1 activity. Our data indicate that the catalytic domain of hMps1 displays affinity for microtubules and that microtubule binding could contribute to the regulation of kinase activity.

摘要

Mps1蛋白激酶家族的成员参与了从酵母到人类等多种物种中动粒介导的纺锤体组装检查点的调控。然而,关于脊椎动物Mps1激酶的亚细胞定位及其在中心体复制中可能发挥的作用,已有相互矛盾的数据报道。此外,目前对于细胞周期中Mps1激酶的调控了解甚少。在此,我们利用免疫荧光显微镜、免疫印迹以及siRNA介导的hMps1缺失技术,重新研究了该激酶的亚细胞定位。我们的数据证实了hMps1与动粒的关联,但表明一些抗hMps1抗体产生的中心体染色可能是由于与其他蛋白质的交叉反应所致。我们还表明,hMps1与动粒的关联是由氨基末端的非催化结构域介导的,并且特别需要动粒处存在Hec1/Ndc80 - Nuf2复合物。最后,我们结合体外结合研究和激酶分析,以探讨微管对hMps1活性的影响。我们的数据表明,hMps1的催化结构域对微管具有亲和力,并且微管结合可能有助于激酶活性的调控。

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