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采用dia-PASEF和短梯度的离子淌度分辨磷酸化蛋白质组学

Ion mobility-resolved phosphoproteomics with dia-PASEF and short gradients.

作者信息

Oliinyk Denys, Meier Florian

机构信息

Functional Proteomics, Jena University Hospital, Jena, Germany.

出版信息

Proteomics. 2023 Apr;23(7-8):e2200032. doi: 10.1002/pmic.202200032. Epub 2022 Nov 14.

DOI:10.1002/pmic.202200032
PMID:36300730
Abstract

Mass spectrometry-based phosphoproteomics has identified >150,000 post-translational phosphorylation sites in the human proteome. To disentangle their functional relevance, complex experimental designs that require increased throughput are now coming into focus. Here, we apply dia-PASEF on a trapped ion mobility (TIMS) mass spectrometer to analyze the phosphoproteome of a human cancer cell line in short liquid chromatography gradients. At low sample amounts equivalent to ∼20 ug protein digest per analysis, we quantified over 13,000 phosphopeptides including ∼8700 class I phosphosites in 1 h without a spectral library. Decreasing the gradient time to 15 min yielded virtually identical coverage of the phosphoproteome, and with 7 min gradients we still quantified about 80% of the class I sites with a median coefficient of variation <10% in quadruplicates. We attribute this in part to the increased peak capacity, which effectively compensates for the higher peptide density per time unit in shorter gradients. Our data show a five-fold reduction in the number of co-isolated peptides with TIMS. In the most extreme case, these were positional isomers of nearby phosphosites that remained unresolved with fast liquid chromatography. In summary, our study demonstrates how key features of dia-PASEF translate to phosphoproteomics.

摘要

基于质谱的磷酸化蛋白质组学已在人类蛋白质组中鉴定出超过15万个翻译后磷酸化位点。为了理清它们的功能相关性,如今需要更高通量的复杂实验设计成为了关注焦点。在此,我们在一台捕集离子淌度(TIMS)质谱仪上应用dia-PASEF,以在短液相色谱梯度下分析一种人类癌细胞系的磷酸化蛋白质组。在每次分析相当于约20微克蛋白质消化物的低样品量下,我们在1小时内无需谱库就对超过13,000个磷酸肽进行了定量,其中包括约8700个I类磷酸化位点。将梯度时间缩短至15分钟,磷酸化蛋白质组的覆盖度几乎相同,而在7分钟梯度下,我们仍能对约80%的I类位点进行定量,四次重复分析的变异系数中位数<10%。我们将此部分归因于峰容量的增加,这有效地补偿了较短梯度中每时间单位更高的肽密度。我们的数据显示,使用TIMS时共分离肽的数量减少了五倍。在最极端的情况下,这些是附近磷酸化位点的位置异构体,在快速液相色谱中仍无法分离。总之,我们的研究展示了dia-PASEF的关键特性如何转化到磷酸化蛋白质组学中。

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