Jetton Neal, Rothberg Karen G, Hubbard James G, Wise John, Li Yan, Ball Haydn L, Ruben Larry
Department of Biological Sciences, Southern Methodist University, Dallas, TX 75275, USA.
Mol Microbiol. 2009 Apr;72(2):442-58. doi: 10.1111/j.1365-2958.2009.06657.x. Epub 2009 Mar 6.
Aurora kinase family members co-ordinate a range of events associated with mitosis and cytokinesis. Anti-cancer therapies are currently being developed against them. Here, we evaluate whether Aurora kinase-1 (TbAUK1) from pathogenic Trypanosoma brucei might be targeted in anti-parasitic therapies as well. Conditional knockdown of TbAUK1 within infected mice demonstrated its essential contribution to infection. An in vitro kinase assay was developed which used recombinant trypanosome histone H3 as a substrate. Tandem mass spectroscopy identified a novel phosphorylation site in the carboxyl-tail of recombinant trypanosome histone H3. Hesperadin, an inhibitor of human Aurora B, prevented the phosphorylation of substrate with IC(50) of 40 nM. Growth of cultured bloodstream forms was also sensitive to Hesperadin (IC(50) of 50 nM). Hesperadin blocked nuclear division and cytokinesis but not other aspects of the cell cycle. Consequently, growth arrested cells accumulated multiple kinetoplasts, flagella and nucleoli, similar to the effects of RNAi-dependent knockdown of TbAUK1 in cultured bloodstream forms cells. Molecular models predicted high-affinity binding of Hesperadin to both conserved and novel sites in TbAUK1. Collectively, these data demonstrate that cell cycle progression is essential for infections with T. brucei and that parasite Aurora kinases can be targeted with small-molecule inhibitors.
极光激酶家族成员协调一系列与有丝分裂和胞质分裂相关的事件。目前正在研发针对它们的抗癌疗法。在此,我们也评估来自致病性布氏锥虫的极光激酶-1(TbAUK1)是否可作为抗寄生虫疗法的靶点。在受感染小鼠体内对TbAUK1进行条件性敲低,证明了其对感染的重要作用。开发了一种体外激酶测定法,使用重组锥虫组蛋白H3作为底物。串联质谱法鉴定出重组锥虫组蛋白H3羧基末端的一个新的磷酸化位点。人极光B的抑制剂海司他汀能以40 nM的半数抑制浓度(IC50)阻止底物的磷酸化。培养的血流形式的虫体生长对海司他汀也敏感(IC50为50 nM)。海司他汀阻断核分裂和胞质分裂,但不影响细胞周期的其他方面。因此,生长停滞的细胞积累了多个动基体、鞭毛和核仁,这与在培养的血流形式细胞中RNAi依赖性敲低TbAUK1的效果相似。分子模型预测海司他汀与TbAUK1中的保守位点和新位点均有高亲和力结合。总体而言,这些数据表明细胞周期进程对布氏锥虫感染至关重要,并且寄生虫极光激酶可被小分子抑制剂靶向作用。