From the ‡Biognosys, 8952 Zurich-Schlieren, Switzerland.
§Nestlé Institute of Health Sciences, 1015 Lausanne, Switzerland.
Mol Cell Proteomics. 2019 Jun;18(6):1242-1254. doi: 10.1074/mcp.RA118.001288. Epub 2019 Apr 4.
Comprehensive, high throughput analysis of the plasma proteome has the potential to enable holistic analysis of the health state of an individual. Based on our own experience and the evaluation of recent large-scale plasma mass spectrometry (MS) based proteomic studies, we identified two outstanding challenges: slow and delicate nano-flow liquid chromatography (LC) and irreproducibility of identification of data-dependent acquisition (DDA). We determined an optimal solution reducing these limitations with robust capillary-flow data-independent acquisition (DIA) MS. This platform can measure 31 plasma proteomes per day. Using this setup, we acquired a large-scale plasma study of the diet, obesity and genes dietary (DiOGenes) comprising 1508 samples. Proving the robustness, the complete acquisition was achieved on a single analytical column. Totally, 565 proteins (459 identified with two or more peptide sequences) were profiled with 74% data set completeness. On average 408 proteins (5246 peptides) were identified per acquisition (319 proteins in 90% of all acquisitions). The workflow reproducibility was assessed using 34 quality control pools acquired at regular intervals, resulting in 92% data set completeness with CVs for protein measurements of 10.9%.The profiles of 20 apolipoproteins could be profiled revealing distinct changes. The weight loss and weight maintenance resulted in sustained effects on low-grade inflammation, as well as steroid hormone and lipid metabolism, indicating beneficial effects. Comparison to other large-scale plasma weight loss studies demonstrated high robustness and quality of biomarker candidates identified. Tracking of nonenzymatic glycation indicated a delayed, slight reduction of glycation in the weight maintenance phase. Using stable-isotope-references, we could directly and absolutely quantify 60 proteins in the DIA.In conclusion, we present herein the first large-scale plasma DIA study and one of the largest clinical research proteomic studies to date. Application of this fast and robust workflow has great potential to advance biomarker discovery in plasma.
全面、高通量的血浆蛋白质组分析有可能实现对个体健康状态的整体分析。基于我们自己的经验和对最近大规模基于质谱的血浆蛋白质组学研究的评估,我们确定了两个突出的挑战:缓慢而精细的纳米流液相色谱(LC)和数据依赖型采集(DDA)的鉴定不可重复性。我们确定了一个最佳解决方案,即用稳健的毛细管流数据非依赖型采集(DIA)MS 来减少这些限制。该平台每天可以测量 31 个血浆蛋白质组。使用该设置,我们进行了一项大规模的饮食、肥胖和基因饮食(DiOGenes)的血浆研究,包含 1508 个样本。通过使用稳健的单个分析柱,我们成功地完成了完整的采集。总共鉴定出 565 种蛋白质(459 种蛋白质有两个或更多肽序列鉴定),数据集完整性为 74%。平均每个采集可鉴定出 408 种蛋白质(5246 个肽)(90%的采集中鉴定出 319 种蛋白质)。使用定期采集的 34 个质量控制池评估工作流程的可重复性,得到 92%的数据集完整性,蛋白质测量的 CV 值为 10.9%。20 种载脂蛋白的图谱可以被分析出来,揭示出明显的变化。减肥和保持体重导致低度炎症、类固醇激素和脂质代谢持续变化,表明有益的效果。与其他大规模血浆减肥研究相比,该研究鉴定出的生物标志物候选物具有很高的稳健性和质量。非酶糖化的跟踪表明,在体重维持阶段糖化的速度稍慢且略有减少。使用稳定同位素参考,我们可以直接和绝对定量 DIA 中的 60 种蛋白质。总之,本文首次报道了大规模血浆 DIA 研究和迄今为止最大的临床研究蛋白质组学研究之一。应用这种快速而稳健的工作流程有可能在血浆中推进生物标志物的发现。