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基于质谱的磷酸化蛋白质组学的潜力受到全球离子抑制的限制。

Global Ion Suppression Limits the Potential of Mass Spectrometry Based Phosphoproteomics.

机构信息

Biozentrum , University of Basel , Klingelbergstrasse 50/70 , 4056 Basel , Switzerland.

出版信息

J Proteome Res. 2019 Jan 4;18(1):493-507. doi: 10.1021/acs.jproteome.8b00812. Epub 2018 Nov 12.

Abstract

Mass spectrometry based proteomics has become the method of choice for pinpointing and monitoring thousands of post-translational modifications, predominately phosphorylation sites, in cellular signaling studies. Critical for achieving this analytical depth is the enrichment of phosphorylated peptides prior to liquid chromatography-mass spectrometry (MS) analysis. Despite the high prevalence of this modification, the numbers of identified phosphopeptides lag behind those achieved for unmodified peptides, and the cause for this still remains controversial. Here, we use an effective phosphatase protocol that considerably improves global ionization efficiency and, therefore, the overall sensitivity and coverage of standard phosphoproteomics studies. We demonstrate the power of our method on the model system of Salmonella-infected macrophages by extending the current quantitative picture of immune signaling pathways involved in infection. In combination with sensitive, label-free targeted MS for phosphorylation site validation, our approach is ideally suited to exploring cellular phosphorylation based signaling networks in high detail.

摘要

基于质谱的蛋白质组学已成为精确定位和监测细胞信号研究中数千种翻译后修饰(主要是磷酸化位点)的首选方法。实现这种分析深度的关键是在液相色谱-质谱(MS)分析之前对磷酸化肽进行富集。尽管这种修饰很普遍,但鉴定出的磷酸肽数量落后于未修饰肽的数量,其原因仍然存在争议。在这里,我们使用一种有效的磷酸酶方案,该方案大大提高了全局离子化效率,从而提高了标准磷酸蛋白质组学研究的整体灵敏度和覆盖率。我们通过扩展当前感染中涉及的免疫信号通路的定量图片,在沙门氏菌感染的巨噬细胞模型系统中证明了我们方法的强大功能。结合用于磷酸化位点验证的灵敏、无标记靶向 MS,我们的方法非常适合深入探索基于细胞磷酸化的信号网络。

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