Department of Biology, Institute of Molecular Systems Biology, Zurich, Switzerland.
Proteomics. 2013 Apr;13(8):1247-56. doi: 10.1002/pmic.201200417. Epub 2013 Mar 11.
SWATH-MS is a data-independent acquisition method that generates, in a single measurement, a complete recording of the fragment ion spectra of all the analytes in a biological sample for which the precursor ions are within a predetermined m/z versus retention time window. To assess the performance and suitability of SWATH-MS-based protein quantification for clinical use, we compared SWATH-MS and SRM-MS-based quantification of N-linked glycoproteins in human plasma, a commonly used sample for biomarker discovery. Using dilution series of isotopically labeled heavy peptides representing biomarker candidates, the LOQ of SWATH-MS was determined to reach 0.0456 fmol at peptide level by targeted data analysis, which corresponds to a concentration of 5-10 ng protein/mL in plasma, while SRM reached a peptide LOQ of 0.0152 fmol. Moreover, the quantification of endogenous glycoproteins using SWATH-MS showed a high degree of reproducibility, with the mean CV of 14.90%, correlating well with SRM results (R(2) = 0.9784). Overall, SWATH-MS measurements showed a slightly lower sensitivity and a comparable reproducibility to state-of-the-art SRM measurements for targeted quantification of the N-glycosites in human blood. However, a significantly larger number of peptides can be quantified per analysis. We suggest that SWATH-MS analysis combined with N-glycoproteome enrichment in plasma samples is a promising integrative proteomic approach for biomarker discovery and verification.
SWATH-MS 是一种数据非依赖性采集方法,可在单次测量中生成生物样品中所有分析物的碎片离子谱的完整记录,这些分析物的前体离子在预定的 m/z 与保留时间窗口内。为了评估基于 SWATH-MS 的蛋白质定量在临床应用中的性能和适用性,我们比较了 SWATH-MS 和基于 SRM-MS 的人血浆中 N-连接糖蛋白定量,血浆是一种常用于生物标志物发现的常用样本。使用代表生物标志物候选物的同位素标记重肽的稀释系列,通过靶向数据分析确定 SWATH-MS 的 LOQ 达到肽水平的 0.0456 fmol,相当于血浆中 5-10ng 蛋白/mL 的浓度,而 SRM 达到肽 LOQ 的 0.0152 fmol。此外,使用 SWATH-MS 对内源性糖蛋白进行定量显示出高度的重现性,平均 CV 为 14.90%,与 SRM 结果相关性良好(R²=0.9784)。总体而言,SWATH-MS 测量结果显示出略低的灵敏度和与最先进的 SRM 测量结果相当的重现性,可用于靶向定量人血液中的 N-糖基化位点。然而,每次分析可以定量的肽数量明显更多。我们建议,SWATH-MS 分析与血浆样品中的 N-糖蛋白组富集相结合,是一种用于生物标志物发现和验证的有前途的综合蛋白质组学方法。