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Kinase-Associated Phosphoisoform Assay: a novel candidate-based method to detect specific kinase-substrate phosphorylation interactions in vivo

机译:激酶相关的磷酸亚型测定:一种基于候选物的新颖方法,可在体内检测特定的激酶-底物磷酸化相互作用

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摘要

udBackgroundududProtein kinases are important components of signalling pathways, and kinomes have remarkably expanded in plants. Yet, our knowledge of kinase substrates in plants is scarce, partly because tools to analyse protein phosphorylation dynamically are limited. Here we describe Kinase-Associated Phosphoisoform Assay, a flexible experimental method for directed experiments to study specific kinase-substrate interactions in vivo.ududThe concept is based on the differential phosphoisoform distribution of candidate substrates transiently expressed with or without co-expression of activated kinases. Phosphorylation status of epitope-tagged proteins is subsequently detected by high-resolution capillary isoelectric focusing coupled with nanofluidic immunoassay, which is capable of detecting subtle changes in isoform distribution.udResultsududThe concept is validated by showing phosphorylation of the known mitogen-activated protein kinase (MAPK) substrate, ACS6, by MPK6. Next, we demonstrate that two transcription factors, WUS and AP2, both of which are shown to be master regulators of plant development by extensive genetic studies, exist in multiple isoforms in plant cells and are phosphorylated by activated MAPKs.udConclusionududAs plant development flexibly responds to environmental conditions, phosphorylation of developmental regulators by environmentally-activated kinases may participate in linking external cues to developmental regulation. As a counterpart of advances in unbiased screening methods to identify potential protein kinase substrates, such as phosphoproteomics and computational predictions, our results expand the candidate-based experimental toolkit for kinase research and provide an alternative in vivo approach to existing in vitro methodologies.
机译:蛋白激酶是信号通路的重要组成部分,并且植物中的激酶组已经显着扩展。但是,我们对植物中激酶底物的了解很少,部分原因是动态分析蛋白质磷酸化的工具有限。在这里,我们描述了激酶相关的磷酸同工型测定法,这是一种用于在体内研究特定激酶与底物相互作用的定向实验的灵活实验方法。 ud ud该概念基于瞬时表达的候选底物在有或没有共表达时的差异化磷酸同工型分布。活化的激酶。随后通过高分辨率毛细管等电聚焦结合纳米流体免疫测定法检测表位标记蛋白的磷酸化状态,该方法能够检测同工型分布的细微变化。 udResults ud ud通过显示已知有丝分裂原-的磷酸化可以验证这一概念。 MPK6激活的蛋白激酶(MAPK)底物ACS6。接下来,我们证明了两个转录因子WUS和AP2,通过广泛的遗传研究均显示为植物发育的主要调控因子,它们存在于植物细胞的多种亚型中,并被活化的MAPK磷酸化。 udConclusion ud udAs植物的发育可以灵活地响应环境条件,环境调节激酶使发育调节剂的磷酸化可能参与将外部线索与发育调节联系起来。作为鉴定蛋白激酶组和计算预测等潜在蛋白激酶底物的无偏筛选方法的一项进步,我们的结果扩大了基于候选物的激酶研究实验工具包,并为现有的体外方法提供了另一种体内方法。

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