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Sensitive multiplexed analysis of kinase activities and activity-based kinase identification

机译:激酶活性的敏感多重分析和基于活性的激酶鉴定

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Constitutive activation of one or more kinase signaling pathways is a hallmark of many cancers. Here we extend the previously described mass spectrometry-based KAYAK approach by monitoring kinase activities from multiple signaling pathways simultaneously. This improved single-reaction strategy, which quantifies the phosphorylation of 90 synthetic peptides in a single mass spectrometry run, is compatible with nanogram to microgram amounts of cell lysate. Furthermore, the approach enhances kinase monospecificity through substrate competition effects, faithfully reporting the signatures of many signaling pathways after mitogen stimulation or of basal pathway activation differences across a panel of well-studied cancer cell lines. Hierarchical clustering of activities from related experiments groups peptides phosphorylated by similar kinases together and, when combined with pathway alteration using pharmacological inhibitors, distinguishes underlying differences in potency, off-target effects and genetic backgrounds. Finally, we introduce a strategy to identify the kinase, and even associated protein complex members, responsible for phosphorylation events of interest.
机译:一种或多种激酶信号传导途径的组成性激活是许多癌症的标志。在这里,我们通过同时监测来自多个信号通路的激酶活性,扩展了先前描述的基于质谱的KAYAK方法。这种改进的单反应策略可在单次质谱运行中量化90种合成肽的磷酸化程度,与纳克至微克量的细胞裂解液兼容。此外,该方法通过底物竞争作用增强了激酶的单特异性,忠实地报告了促分裂原刺激后许多信号通路的信号或一组经过广泛研究的癌细胞系的基础通路激活差异。来自相关实验的活动的层次聚类将被相似激酶磷酸化的肽组合在一起,当与使用药理抑制剂的途径改变结合时,可区分出效力,脱靶效应和遗传背景方面的根本差异。最后,我们引入了一种策略来识别负责目标磷酸化事件的激酶,甚至是相关的蛋白质复合物成员。

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