School of Biosciences, College of Life and Environmental Sciences, University of Birmingham, Birmingham, B15 2TT, United Kingdom.
Anal Chem. 2012 Mar 6;84(5):2597-601. doi: 10.1021/ac203321y. Epub 2012 Feb 10.
The analysis of intact glycopeptides by mass spectrometry is challenging due to the numerous possibilities for isomerization, both within the attached glycan and the location of the modification on the peptide backbone. Here, we demonstrate that high field asymmetric wave ion mobility spectrometry (FAIMS), also known as differential ion mobility, is able to separate isomeric O-linked glycopeptides that have identical sequences but differing sites of glycosylation. Two glycopeptides from the glycoprotein mucin 5AC, GT(GalNAc)TPSPVPTTSTTSAP and GTTPSPVPTTST(GalNAc)TSAP (where GalNAc is O-linked N-acetylgalactosamine), were shown to coelute following reversed-phase liquid chromatography. However, FAIMS analysis of the glycopeptides revealed that the compensation voltage ranges in which the peptides were transmitted differed. Thus, it is possible at certain compensation voltages to completely separate the glycopeptides. Separation of the glycopeptides was confirmed by unique reporter ions produced by supplemental activation electron transfer dissociation mass spectrometry. These fragments also enable localization of the site of glycosylation. The results suggest that glycan position plays a key role in determining gas-phase glycopeptide structure and have implications for the application of FAIMS in glycoproteomics.
由于糖基化的异构化以及修饰在肽骨架上的位置的异构化具有多种可能性,因此对完整糖肽进行质谱分析具有挑战性。在这里,我们证明高场非对称波离子迁移谱(FAIMS),也称为差分离子迁移率,能够分离具有相同序列但糖基化位置不同的异构 O 连接糖肽。两种糖肽来自糖蛋白粘蛋白 5AC,GT(GalNAc)TPSPVPTTSTTSAP 和 GTTPSPVPTTST(GalNAc)TSAP(其中 GalNAc 是 O 连接的 N-乙酰半乳糖胺),在反相液相色谱法中显示出共洗脱。然而,对糖肽的 FAIMS 分析表明,肽传输的补偿电压范围不同。因此,在某些补偿电压下,完全分离糖肽是可能的。通过补充激活电子转移解离质谱产生的独特报告离子证实了糖肽的分离。这些片段还能够定位糖基化的位置。结果表明,糖基化位置在确定气相糖肽结构方面起着关键作用,并对 FAIMS 在糖蛋白质组学中的应用具有影响。