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通过基于质谱的系统水平磷酸化蛋白质组学对细胞信号传导和药物作用进行定量分析。

Quantitative analysis of cell signaling and drug action via mass spectrometry-based systems level phosphoproteomics.

作者信息

Tedford Nathan C, Hall Amy B, Graham James R, Murphy Cheryl E, Gordon Neal F, Radding Jeffrey A

机构信息

Epitome Biosystems Inc, Waltham, MA, USA.

出版信息

Proteomics. 2009 Mar;9(6):1469-87. doi: 10.1002/pmic.200800468.

Abstract

Protein phosphorylation is a primary form of information transfer in cell signaling pathways and plays a crucial role in regulating biological responses. Aberrant phosphorylation has been implicated in a number of diseases, and kinases and phosphatases, the cellular enzymes that control dynamic phosphorylation events, present attractive therapeutic targets. However, the innate complexity of signaling networks has presented many challenges to therapeutic target selection and successful drug development. Approaches in phosphoproteomics can contribute functional, systems-level datasets across signaling networks that can provide insight into suitable drug targets, more broadly profile compound activities, and identify key biomarkers to assess clinical outcomes. Advances in MS-based phosphoproteomics efforts now provide the ability to quantitate phosphorylation with throughput and sensitivity to sample a significant portion of the phosphoproteome in clinically relevant systems. This review will discuss recent work and examples of application data that demonstrate the utility of MS, with a particular focus on the use of quantitative phosphoproteomics and phosphotyrosine-directed signaling analyses to provide robust measurement for functional biological interpretation of drug action on signaling and phenotypic outcomes.

摘要

蛋白质磷酸化是细胞信号通路中信息传递的主要形式,在调节生物学反应中起着关键作用。异常磷酸化与多种疾病有关,而激酶和磷酸酶作为控制动态磷酸化事件的细胞酶,是颇具吸引力的治疗靶点。然而,信号网络固有的复杂性给治疗靶点的选择和成功的药物开发带来了诸多挑战。磷酸化蛋白质组学方法能够提供跨信号网络的功能性、系统水平数据集,有助于深入了解合适的药物靶点,更全面地描绘化合物活性,并识别评估临床结果的关键生物标志物。基于质谱的磷酸化蛋白质组学研究的进展,现在能够以高通量和高灵敏度对磷酸化进行定量,从而在临床相关系统中对很大一部分磷酸化蛋白质组进行采样。本综述将讨论近期的工作以及应用数据示例,这些工作和示例展示了质谱的实用性,尤其侧重于定量磷酸化蛋白质组学和磷酸酪氨酸定向信号分析的应用,以便为药物对信号传导和表型结果的作用进行功能生物学解释提供可靠的测量。

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