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Combining affinity proteomics and network context to identify new phosphatase substrates and adapters in growth pathways

机译:结合亲和蛋白质组学和网络环境,以识别新的磷酸酶底物和生长途径中的衔接子

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摘要

Protein phosphorylation homoeostasis is tightly controlled and pathological conditions are caused by subtle alterations of the cell phosphorylation profile. Altered levels of kinase activities have already been associated to specific diseases. Less is known about the impact of phosphatases, the enzymes that down-regulate phosphorylation by removing the phosphate groups. This is partly due to our poor understanding of the phosphatase-substrate network. Much of phosphatase substrate specificity is not based on intrinsic enzyme specificity with the catalytic pocket recognizing the sequence/structure context of the phosphorylated residue. In addition many phosphatase catalytic subunits do not form a stable complex with their substrates. This makes the inference and validation of phosphatase substrates a non-trivial task. Here, we present a novel approach that builds on the observation that much of phosphatase substrate selection is based on the network of physical interactions linking the phosphatase to the substrate. We first used affinity proteomics coupled to quantitative mass spectrometry to saturate the interactome of eight phosphatases whose down regulations was shown to affect the activation of the RAS-PI3K pathway. By integrating information from functional siRNA with protein interaction information, we develop a strategy that aims at inferring phosphatase physiological substrates. Graph analysis is used to identify protein scaffolds that may link the catalytic subunits to their substrates. By this approach we rediscover several previously described phosphatase substrate interactions and characterize two new protein scaffolds that promote the dephosphorylation of PTPN11 and ERK by DUSP18 and DUSP26, respectively.
机译:严格控制蛋白质磷酸化的同源性,并通过细胞磷酸化谱图的细微变化引起病理状况。激酶活性水平的改变已经与特定疾病相关。关于磷酸酶的影响知之甚少,磷酸酶是通过去除磷酸基团而下调磷酸化的酶。部分原因是由于我们对磷酸酶-底物网络了解不足。磷酸酶底物的许多特异性不是基于固有的酶特异性,而催化口袋识别出磷酸化残基的序列/结构。另外,许多磷酸酶催化亚基不能与其底物形成稳定的复合物。这使得磷酸酶底物的推论和验证成为一项艰巨的任务。在这里,我们提出了一种新颖的方法,该方法建立在以下观察基础上:磷酸酶底物的选择主要基于将磷酸酶连接至底物的物理相互作用网络。我们首先使用亲和蛋白质组学与定量质谱联用来饱和八种磷酸酶的相互作用组,这些酶的下调被证明会影响RAS-PI3K途径的激活。通过整合功能性siRNA的信息与蛋白质相互作用信息,我们开发了一种旨在推断磷酸酶生理底物的策略。图分析用于鉴定可将催化亚基与其底物连接的蛋白质支架。通过这种方法,我们重新发现了几个先前描述的磷酸酶底物相互作用,并鉴定了两个新的蛋白支架,它们分别促进DUSP18和DUSP26对PTPN11和ERK的去磷酸化作用。

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