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通过对纯化蛋白质进行定量质谱分析验证酵母中受调控的蛋白质磷酸化事件。

Validation of regulated protein phosphorylation events in yeast by quantitative mass spectrometry analysis of purified proteins.

机构信息

Department for Biochemistry, Max F. Perutz Laboratories, University of Vienna, Vienna, Austria.

出版信息

Proteomics. 2012 Oct;12(19-20):3030-43. doi: 10.1002/pmic.201200185. Epub 2012 Sep 19.

Abstract

Global phosphoproteomic studies based on MS have generated qualitative and quantitative data describing protein phosphorylation events in various biological systems. Since high-throughput data for protein modifications are inherently incomplete, we developed a strategy to extend and validate such primary datasets. We selected interesting protein candidates from a global screen in yeast and employed a modified histidine biotin tag that allows tandem affinity purifications of our targets under denaturing conditions. Products in question can be digested directly from affinity resins and phosphopeptides can be further enriched via TiO(2) before MS analysis. Our robust protocol can be amended for SILAC as well as iTRAQ quantifications or label-free approaches based on selective reaction monitoring, allowing completion of the phosphorylation pattern in a first step, followed by a detailed analysis of the phosphorylation kinetics. We exemplify the value of such a strategy by an in-depth analysis of Pan1, a highly phosphorylated factor involved in early steps of endocytosis. The study of Pan1 under osmotic stress conditions in different mutant backgrounds allowed us to differentiate between mitogen-activated protein kinase Hog1 driven and Hog1 independent stress responses.

摘要

基于 MS 的全球磷酸化蛋白质组学研究产生了定性和定量数据,描述了各种生物系统中的蛋白质磷酸化事件。由于蛋白质修饰的高通量数据本质上是不完全的,我们开发了一种策略来扩展和验证这些原始数据集。我们从酵母的全局筛选中选择了有趣的蛋白质候选物,并采用了改良的组氨酸生物素标签,允许在变性条件下对我们的靶标进行串联亲和纯化。有问题的产物可以直接从亲和树脂中消化,并且磷酸肽可以在 MS 分析之前通过 TiO(2)进一步富集。我们的稳健方案可以修改为 SILAC 以及 iTRAQ 定量或基于选择性反应监测的无标记方法,允许在第一步完成磷酸化模式,然后对磷酸化动力学进行详细分析。我们通过对参与胞吞作用早期步骤的高度磷酸化因子 Pan1 的深入分析来说明这种策略的价值。在不同突变背景下的渗透压应激条件下研究 Pan1,使我们能够区分丝裂原活化蛋白激酶 Hog1 驱动的和 Hog1 非依赖的应激反应。

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