Friedrich Miescher Laboratory of the Max Planck Society, 72076 Tuebingen, Germany.
Sci Signal. 2011 Jun 28;4(179):rs6. doi: 10.1126/scisignal.2001588.
Kinases of the Aurora family are essential for the proper execution of mitosis in eukaryotes, and Aurora inhibitors are in clinical trials as anticancer drugs. We applied site-specific quantitative phosphoproteomics in conjunction with chemical inhibition of Aurora to identify mitotic Aurora substrates in fission yeast on a proteome-wide scale. We detected 8000 phosphorylation events, of which we assigned almost 6000 to a specific residue; 220 were reduced in cells exposed to the Aurora inhibitor. After controlling for unspecific effects of the inhibitor, we classified 70 sites (on 42 proteins) as probable targets of Aurora, which enabled refinement of the consensus sequence for phosphorylation by Aurora. Several of the substrate candidates were known targets of Aurora, validating the approach, but most represented newly detected Aurora substrates. The involvement of these Aurora substrates in diverse aspects of chromatin dynamics suggests that in addition to its established role in controlling chromosome compaction and attachment to the mitotic spindle, Aurora influences other aspects of chromatin architecture and function during mitosis.
极光家族的激酶对于真核生物有丝分裂的正常执行至关重要,极光抑制剂正在临床试验中作为抗癌药物。我们应用定点定量磷酸化蛋白质组学结合极光的化学抑制,在裂殖酵母中从蛋白质组水平上鉴定有丝分裂极光底物。我们检测到 8000 个磷酸化事件,其中我们将近 6000 个分配到特定的残基上;在暴露于极光抑制剂的细胞中,有 220 个减少。在控制抑制剂的非特异性效应后,我们将 70 个位点(42 种蛋白质)分类为极光的可能靶标,这使极光磷酸化的共识序列得到了改进。一些候选底物是已知的极光靶标,验证了该方法,但大多数是新发现的极光底物。这些极光底物在染色质动力学的不同方面的参与表明,除了在控制染色体浓缩和与有丝分裂纺锤体连接方面的既定作用外,极光还影响有丝分裂期间染色质结构和功能的其他方面。