Department of Neurology, Donders Institute for Brain, Cognition, and Behavior, Radboud University Medical Center, Nijmegen 6525 GA, Netherlands.
Division of BioAnalytical Chemistry, AIMMS Amsterdam Institute of Molecular and Life Sciences, Vrije Universiteit Amsterdam, Amsterdam 1081 HZ, Netherlands.
Anal Chem. 2024 Jun 4;96(22):8956-8964. doi: 10.1021/acs.analchem.3c05874. Epub 2024 May 22.
Glycoproteins play important roles in numerous physiological processes and are often implicated in disease. Analysis of site-specific protein glycobiology through glycoproteomics has evolved rapidly in recent years thanks to hardware and software innovations. Particularly, the introduction of parallel accumulation serial fragmentation (PASEF) on hybrid trapped ion mobility time-of-flight mass spectrometry instruments combined deep proteome sequencing with separation of (near-)isobaric precursor ions or converging isotope envelopes through ion mobility separation. However, the reported use of PASEF in integrated glycoproteomics workflows to comprehensively capture the glycoproteome is still limited. To this end, we developed an integrated methodology using timsTOF Pro 2 to enhance N-glycopeptide identifications in complex mixtures. We systematically optimized the ion optics tuning, collision energies, mobility isolation width, and the use of dopant-enriched nitrogen gas (DEN). Thus, we obtained a marked increase in unique glycopeptide identification rates compared to standard proteomics settings, showcasing our results on a large set of glycopeptides. With short liquid chromatography gradients of 30 min, we increased the number of unique N-glycopeptide identifications in human plasma samples from around 100 identifications under standard proteomics conditions to up to 1500 with our optimized glycoproteomics approach, highlighting the need for tailored optimizations to obtain comprehensive data.
糖蛋白在许多生理过程中发挥着重要作用,并且经常与疾病有关。近年来,由于硬件和软件创新,通过糖蛋白质组学对特定位点的蛋白质糖生物学的分析得到了快速发展。特别是,在混合捕获离子淌度飞行时间质谱仪上引入平行累积串联碎裂(PASEF)技术,结合深度蛋白质组测序以及通过离子淌度分离对(近)等质荷比前体离子或收敛同位素包络进行分离。然而,在综合糖蛋白质组学工作流程中,PASEF 被报道用于全面捕获糖蛋白质组的应用仍然有限。为此,我们开发了一种使用 timsTOF Pro 2 的综合方法,以增强复杂混合物中 N-糖肽的鉴定。我们系统地优化了离子光学调节、碰撞能、淌度分离宽度以及富氮掺杂剂(DEN)的使用。因此,与标准蛋白质组学设置相比,我们获得了独特糖肽鉴定率的显著提高,在大量糖肽上展示了我们的结果。通过 30 分钟的短液相梯度,我们将人血浆样品中独特的 N-糖肽鉴定数量从标准蛋白质组学条件下的约 100 个鉴定增加到我们优化的糖蛋白质组学方法下的 1500 个,突出了需要进行定制优化以获得全面数据的必要性。