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A rapid computational approach identifies SPICE1 as an Aurora kinase substrate

机译:快速计算方法将SPICE1识别为Aurora激酶底物

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Aurora kinases play a major role in mitosis by regulating diverse substrates. Defining their critical downstream targets is important in understanding Aurora kinase function. Here we have developed an unbiased computational approach to identify new Aurora kinase substrates based on phosphorylation site clustering, protein localization, protein structure, and species conservation. We validate the microtubule-associated proteins Clasp2, Elys, tubulin tyrosine ligase-like polyglutamylase residues 330–624 and spindle and centriole associated protein 1, residues 549–855 (SPICE1), as Aurora A and B kinases substrates in vitro. We also demonstrate that SPICE1 localization is regulated by Aurora kinases during mitosis. In the absence of Aurora kinase activity, SPICE1 remains at centrioles but does not target to the spindle. Similarly, a nonphosphorylatable SPICE1 mutant no longer localizes to the spindle. Finally, we show that misregulating SPICE1 phosphorylation results in abnormal centriole number, spindle multipolarity, and chromosome alignment defects. Overall, our work indicates that temporal and spatial Aurora kinase–mediated regulation of SPICE1 is important for correct chromosome segregation. In addition, our work provides a database-search tool that enables rapid identification of Aurora kinase substrates.
机译:极光激酶通过调节多种底物在有丝分裂中起主要作用。定义其关键的下游靶标对于理解Aurora激酶功能很重要。在这里,我们已经开发了一种无偏计算方法,可以基于磷酸化位点簇聚,蛋白质定位,蛋白质结构和物种保守性来鉴定新的Aurora激酶底物。我们验证了微管相关蛋白Clasp2,Elys,微管蛋白酪氨酸连接酶样多聚谷氨酰胺酶残基330–624和纺锤体和中心相关蛋白1,残基549–855(SPICE1)作为体外Aurora A和B激酶的底物。我们还证明有丝分裂期间SPICE1的本地化是由Aurora激酶调节的。在没有Aurora激酶活性的情况下,SPICE1保持在中心,但不靶向纺锤体。同样,不可磷酸化的SPICE1突变体不再位于纺锤体上。最后,我们表明错误调节SPICE1磷酸化会导致异常的中心粒数,纺锤体多极性和染色体排列缺陷。总体而言,我们的工作表明,时空的Aurora激酶介导的SPICE1调控对于正确的染色体分离非常重要。此外,我们的工作提供了一种数据库搜索工具,可以快速识别Aurora激酶底物。

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