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Chemoproteomic Profiling Uncovers CDK4-Mediated Phosphorylation of the Translational Suppressor 4E-BP1

机译:化学蛋白质分析揭示了翻译抑制器4e-BP1的CDK4介导的磷酸化

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摘要

Recent estimates of the human proteome suggest there are ~20,000 protein-coding genes, the protein products of which contain >145,000 phosphosites. Unfortunately, in-depth examination of the human phosphoproteome has outpaced the ability to annotate the kinases that mediate these post-translational modifications. To obtain actionable information about phosphorylation-driven signaling cascades, it is essential to identify the kinases responsible for phosphorylating sites that differ across disease states. To fill in these gaps we have developed an unbiased,?chemoproteomic approach for identifying high-confidence kinase-substrate interactions with phosphosite specificity. Using this assay, we uncovered the role of cyclin-dependent kinase 4 (CDK4), a clinically validated kinase important for cell-cycle progression, in regulating cap-dependent translation?via phosphorylation of the tumor suppressor 4E-BP1. The discovery of this signaling axis sheds light on the mechanisms by which CDK4/6 inhibitors control cell proliferation and constitutes a successful example of kinase discovery using an activity-based, kinase-directed probe.
机译:最近对人蛋白质组的估计表明存在〜20,000个蛋白质编码基因,其蛋白质产品含有> 145,000磷酸盐。不幸的是,对人磷蛋白酶组的深入检查过分超出了向介导这些翻译后修饰的激酶的能力。为了获得有关磷酸化驱动的信号级联的可操作信息,必须鉴定负责患有疾病状态不同的磷酸化位点的激酶。为了填补这些间隙,我们开发了一个无偏见的?化学蛋白蛋白方法,用于鉴定具有磷特异性的高置信激酶底物相互作用。使用该测定,我们发现Cyclin依赖性激酶4(CDK4)的作用,临床验证的激酶,对于细胞周期进展至关重要,在调节帽依赖性翻译方面是肿瘤抑制剂4e-BP1的磷酸化。该信号轴的发现在CDK4 / 6抑制剂控制细胞增殖的机制上揭示了使用基于活性的激酶导向探针构成激酶发现的成功示例的机制。

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