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Polo样激酶抑制剂揭示了其在纺锤极维持中的作用。

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

作者信息

McInnes Campbell, Mazumdar Aveek, Mezna Mokdad, Meades Christopher, Midgley Carol, Scaerou Fred, Carpenter Lee, Mackenzie Mairi, Taylor Paul, Walkinshaw Malcolm, Fischer Peter M, Glover David

机构信息

Cyclacel Ltd., James Lindsay Place, Dundee DD1 5JJ, UK.

出版信息

Nat Chem Biol. 2006 Nov;2(11):608-17. doi: 10.1038/nchembio825. Epub 2006 Oct 8.

Abstract

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 gamma-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.

摘要

Polo样激酶(Plks)在有丝分裂进程中具有多种功能,且在多种肿瘤类型中表达上调。小分子Plk抑制剂作为研究Plk生物学特性和开发抗肿瘤药物的工具将具有重要价值。在Plk1激酶结构域同源建模的指导下,我们发现了一个化学系列,该系列显示出对Plk1的强效和选择性抑制作用。一种经过优化的苯并噻唑N-氧化物——环孢素1(1)对纯化中心体的作用表明,Plks是产生MPM2表位、募集γ-微管蛋白并使微管成核所必需的。该化合物还可明显通过增加蛋白磷酸酶的可及性来促进中心体完整性丧失和微管成核能力丧失。我们发现,与RNA干扰后观察到的中期阻滞的双极纺锤体不同,用环孢素1处理活的S2细胞会导致纺锤体崩溃。这种对蛋白质缺失和蛋白质抑制的不同反应可能在抗肿瘤药物的开发中具有重要意义。

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