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Identification of Candidate Cyclin-dependent kinase 1 (Cdk1) Substrates in Mitosis by Quantitative Phosphoproteomics

机译:通过定量磷酸化蛋白质组学鉴定有丝分裂中候选细胞周期蛋白依赖性激酶1(Cdk1)底物。

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摘要

Cyclin-dependent kinase 1 (Cdk1) is an essential regulator of many mitotic processes including the reorganization of the cytoskeleton, chromosome segregation, and formation and separation of daughter cells. Deregulation of Cdk1 activity results in severe defects in these processes. Although the role of Cdk1 in mitosis is well established, only a limited number of Cdk1 substrates have been identified in mammalian cells. To increase our understanding of Cdk1-dependent phosphorylation pathways in mitosis, we conducted a quantitative phosphoproteomics analysis in mitotic HeLa cells using two small molecule inhibitors of Cdk1, Flavopiridol and RO-3306. In these analyses, we identified a total of 24,840 phosphopeptides on 4,273 proteins, of which 1,215 phosphopeptides on 551 proteins were significantly reduced by 2.5-fold or more upon Cdk1 inhibitor addition. Comparison of phosphopeptide quantification upon either inhibitor treatment revealed a high degree of correlation (R-2 value of 0.87) between the different datasets. Motif enrichment analysis of significantly regulated phosphopeptides revealed enrichment of canonical Cdk1 kinase motifs. Interestingly, the majority of proteins identified in this analysis contained two or more Cdk1 inhibitor-sensitive phosphorylation sites, were highly connected with other candidate Cdk1 substrates, were enriched at specific subcellular structures, or were part of protein complexes as identified by the CORUM database. Furthermore, candidate Cdk1 substrates were enriched in G2 and M phase-specific genes. Finally, we validated a subset of candidate Cdk1 substrates by in vitro kinase assays. Our findings provide a valuable resource for the cell signaling and mitosis research communities and greatly increase our knowledge of Cdk1 substrates and Cdk1-dependent signaling pathways.
机译:细胞周期蛋白依赖性激酶1(Cdk1)是许多有丝分裂过程的必需调节剂,包括细胞骨架的重组,染色体分离以及子细胞的形成和分离。 Cdk1活性的失调导致这些过程中的严重缺陷。尽管Cdk1在有丝分裂中的作用已得到很好的确立,但在哺乳动物细胞中仅发现了有限数量的Cdk1底物。为了增加对有丝分裂中Cdk1依赖的磷酸化途径的了解,我们使用两种小分子Cdk1抑制剂Flavopiridol和RO-3306对有丝分裂HeLa细胞进行了磷酸化蛋白质组学定量分析。在这些分析中,我们确定了4,273个蛋白上的总共24,840个磷酸肽,其中551个蛋白上的1,215个磷酸肽在添加Cdk1抑制剂后显着减少了2.5倍或更多。两种抑制剂处理后磷酸肽定量的比较表明,不同数据集之间具有高度相关性(R-2值为0.87)。对显着调节的磷酸肽的母体富集分析表明,规范的Cdk1激酶基序富集。有趣的是,在此分析中鉴定的大多数蛋白质包含两个或多个Cdk1抑制剂敏感的磷酸化位点,与其他候选Cdk1底物高度连接,在特定的亚细胞结构中富集,或者是CORUM数据库鉴定的蛋白质复合物的一部分。此外,候选Cdk1底物富含G2和M相特异性基因。最后,我们通过体外激酶测定法验证了候选Cdk1底物的子集。我们的发现为细胞信号和有丝分裂研究社区提供了宝贵的资源,并大大增加了我们对Cdk1底物和Cdk1依赖性信号通路的了解。

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