Inhibitors of Polo-like kinase reveal roles in spindle-pole maintenance

被引:0
作者
Campbell McInnes
Aveek Mazumdar
Mokdad Mezna
Christopher Meades
Carol Midgley
Fred Scaerou
Lee Carpenter
Mairi Mackenzie
Paul Taylor
Malcolm Walkinshaw
Peter M Fischer
David Glover
机构
[1] Cyclacel Ltd.,Department of Genetics
[2] James Lindsay Place,Department of Structural Biochemistry
[3] Cancer Research UK Cell Cycle Genetics Research Group,College of Pharmacy
[4] University of Cambridge,School of Pharmacy
[5] Cyclacel Ltd.,undefined
[6] Polgen Laboratories,undefined
[7] Babraham Science Park,undefined
[8] University of Edinburgh,undefined
[9] University of South Carolina,undefined
[10] Beatson Institute,undefined
[11] University of Nottingham,undefined
来源
Nature Chemical Biology | 2006年 / 2卷
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摘要
Polo-like kinases (Plks) have several functions in mitotic progression and are upregulated in many tumor types. Small-molecule Plk inhibitors would be valuable as tools for studying Plk biology and for developing antitumor agents. Guided by homology modeling of the Plk1 kinase domain, we have discovered a chemical series that shows potent and selective Plk1 inhibition. The effects of one such optimized benzthiazole N-oxide, cyclapolin 1 (1), on purified centrosomes indicate that Plks are required to generate MPM2 epitopes, recruit γ-tubulin and enable nucleation of microtubules. The compound can also promote loss of centrosome integrity and microtubule nucleating ability apparently through increased accessibility of protein phosphatases. We show that treatment of living S2 cells with cyclapolin 1 leads to collapsed spindles, in contrast to the metaphase-arrested bipolar spindles observed after RNAi. This different response to protein depletion and protein inhibition may have significance in the development of antitumor agents.
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页码:608 / 617
页数:9
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