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Defining the phospho-adhesome through the phosphoproteomic analysis of integrin signalling

机译:通过整合素信号转导的磷酸化蛋白质组学分析定义磷酸化adhesome

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摘要

Cell-extracellular matrix (ECM) adhesion is a fundamental requirement for multicellular existence due to roles in positioning, proliferation and differentiation. Phosphorylation plays a major role in adhesion signalling; however, a full understanding of the phosphorylation events that occur at sites of adhesion is lacking. Here we report a proteomic and phosphoproteomic analysis of adhesion complexes isolated from cells spread on fibronectin. We identify 1,174 proteins, 499 of which are phosphorylated (1,109 phosphorylation sites), including both well-characterized and novel adhesion-regulated phosphorylation events. Immunoblotting suggests that two classes of phosphorylated residues are found at adhesion sites-those induced by adhesion and those constitutively phosphorylated but recruited in response to adhesion. Kinase prediction analysis identifies novel kinases with putative roles in adhesion signalling including CDK1, inhibition of which reduces adhesion complex formation. This phospho-adhesome data set constitutes a valuable resource to improve our understanding of the signalling mechanisms through which cell-ECM interactions control cell behaviour.
机译:由于细胞在细胞外基质(ECM)上的定位,增殖和分化,因此粘附是细胞存在的基本要求。磷酸化在粘附信号中起主要作用。然而,缺乏对在粘附位点发生的磷酸化事件的全面了解。在这里,我们报告了从纤连蛋白上散布的细胞分离的粘附复合物的蛋白质组学和磷酸化蛋白质组学分析。我们鉴定出1,174个蛋白质,其中499个被磷酸化(1,109个磷酸化位点),包括特征明确的和新的粘附调节磷酸化事件。免疫印迹表明,在粘附位点发现了两类磷酸化残基,即由粘附诱导的残基和构成性磷酸化但响应粘附而募集的残基。激酶预测分析确定了在包括CDK1在内的粘附信号中具有推定作用的新型激酶,抑制该作用可减少粘附复合物的形成。该磷酸化-肾上腺素数据集构成了宝贵的资源,可增进我们对细胞-ECM相互作用控制细胞行为的信号传导机制的了解。

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