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A novel landscape of nuclear human CDK2 substrates revealed by in situ phosphorylation

机译:核人CDK2底物的新颖景观,阐述了原位磷酸化

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Cyclin-dependent kinase 2 (CDK2) controls cell division and is central to oncogenic signaling. We used an “in situ” approach to identify CDK2 substrates within nuclei isolated from cells expressing CDK2 engineered to use adenosine 5′-triphosphate analogs. We identified 117 candidate substrates, ~40% of which are known CDK substrates. Previously unknown candidates were validated to be CDK2 substrates, including LSD1, DOT1L, and Rad54. The identification of many chromatin-associated proteins may have been facilitated by labeling conditions that preserved nuclear architecture and physiologic CDK2 regulation by endogenous cyclins. Candidate substrates include proteins that regulate histone modifications, chromatin, transcription, and RNA/DNA metabolism. Many of these proteins also coexist in multi-protein complexes, including epigenetic regulators, that may provide new links between cell division and other cellular processes mediated by CDK2. In situ phosphorylation thus revealed candidate substrates with a high validation rate and should be readily applicable to other nuclear kinases.
机译:细胞周期蛋白依赖性激酶2(CDK2)控制细胞分裂,是致癌信号传导的核心。我们使用了“原位”方法来鉴定从表达CDK2的细胞中分离的细胞核中的CDK2底物用于使用腺苷5'-三磷酸类似物。我们确定了117个候选底物,其中〜40%是已知的CDK基材。以前未知的候选者被验证为CDK2基材,包括LSD1,DOT1L和RAD54。通过用内源细胞周期素保护核结构和生理学CDK2调节的标记条件,可以促进许多染色质相关蛋白的鉴定。候选底物包括调节组蛋白修饰,染色质,转录和RNA / DNA代谢的蛋白质。这些蛋白质中的许多也共存在多蛋白复合物中,包括表观遗传调节剂,其可以提供细胞分裂与CDK2介导的其他细胞过程之间的新联系。因此,原位磷酸化揭示了具有高验证率的候选底物,并且应该容易地适用于其他核激酶。

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