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首页> 外文期刊>Cell Reports >Quantitative Phosphoproteomics Reveals the Signaling Dynamics of Cell-Cycle Kinases in the Fission Yeast Schizosaccharomyces pombe
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Quantitative Phosphoproteomics Reveals the Signaling Dynamics of Cell-Cycle Kinases in the Fission Yeast Schizosaccharomyces pombe

机译:定量磷蛋白蛋白质揭示了裂变酵母Schizosaccharomyces Pombe中细胞周期激酶的信号动态

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Summary Multiple protein kinases regulate cell-cycle progression, of which the cyclin-dependent kinases (CDKs) are thought to act as upstream master regulators. We have used quantitative phosphoproteomics to analyze the fission yeast cell cycle at sufficiently high?temporal resolution to distinguish fine-grain differences in substrate phosphorylation dynamics on a proteome-wide scale. This dataset provides a useful resource for investigating the regulatory dynamics of cell-cycle kinases and their substrates. For example, our analysis indicates that the substrates of different mitotic kinases (CDK, NIMA-related, Polo-like, and Aurora) are phosphorylated in sequential, kinase-specific waves during mitosis. Phosphoproteomics analysis after chemical-genetic manipulation of CDK activity suggests that the timing of these waves is established by the differential dependency of the downstream kinases on upstream CDK. We have also examined the temporal organization of phosphorylation during G1/S, as well as the coordination between the NDR-related kinase Orb6, which controls polarized growth, and other cell-cycle kinases.
机译:发明内容多种蛋白激酶调节细胞周期进展,其中细胞周期依赖性激酶(CDK)被认为是上游校长调节剂。我们已经使用定量磷蛋白蛋白质,以在足够高的情况下分析裂变酵母细胞周期,以区分衬底磷酸化动力学的细粒差异对蛋白质组的规模。该数据集提供了一种用于调查细胞周期激酶及其基材的调节动态的有用资源。例如,我们的分析表明不同丝分裂激酶(CDK,NIMA相关,马子状和极光)的底物在有丝分裂期间以顺序,激酶特异性波磷酸化。 CDK活性化学遗传操作后的磷蛋白酶分析表明,通过下游激酶对上游CDK的差异依赖性建立了这些波的定时。在G1 / s期间,我们还研究了磷酸化的时间组织,以及NDR相关激酶ORB6之间的协调,其控制偏振的生长和其他细胞循环激酶。

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