Exploiting Differential Dissociation Chemistries of O-Linked Glycopeptide Ions for the Localization of Mucin-Type Protein Glycosylation
- 9 December 2008
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of Proteome Research
- Vol. 8 (2) , 493-501
- https://doi.org/10.1021/pr8007072
Abstract
From a glycoproteomic perspective, the unambiguous localization of O-linked oligosaccharide attachment sites is fraught with analytical obstacles. Because no consensus protein sequence exists for O-glycosylation, there is potential for glycan attachment at numerous serine and threonine residues of a given protein. The well-established tendency for O-glycan attachment to occur within serine and threonine rich domains adds further complication to site-specific assignment of mucin-type glycosylation. In addition to the complexities contributed by the polypeptide chain, the O-linked carbohydrate modifications themselves are exceedingly diverse in both compositional and structural terms. This work is aimed at contributing an improved fundamental understanding of the chemistry that dictates dissociation of O-glycopeptide ions during tandem mass spectrometry (MS/MS). Infrared multiphoton dissociation (IRMPD) has been applied to an assortment of O-linked glycopeptide ions encompassing various compositions and charge states. Protonated O-glycopeptides were found to undergo a combination of glycosidic bond cleavage (complete coverage) and peptide bond cleavage (partial coverage). In contrast to previous observations of N-linked glycopeptide dissociation, the sodiated O-glycopeptides did not yield significantly different information as compared to the corresponding protonated ions. IRMPD of deprotonated O-glycosylated peptides provided informative side chain losses from nonglycosylated serine and threonine residues, which indirectly implicated sites of glycan attachment. In this manner, the combination of positive mode and negative mode MS/MS was found to provide conclusive assignment of O-glycosites.Keywords
This publication has 38 references indexed in Scilit:
- Site‐specific analysis of N‐glycans on haptoglobin in sera of patients with pancreatic cancer: A novel approach for the development of tumor markersInternational Journal of Cancer, 2008
- On-Line LC−MS Approach Combining Collision-Induced Dissociation (CID), Electron-Transfer Dissociation (ETD), and CID of an Isolated Charge-Reduced Species for the Trace-Level Characterization of Proteins with Post-Translational ModificationsJournal of Proteome Research, 2007
- N-Glycan Structure Annotation of Glycopeptides Using a Linearized Glycan Structure Database (GlyDB)Journal of Proteome Research, 2007
- Structural analysis of O‐glycopeptides employing negative‐ and positive‐ion multi‐stage mass spectra obtained by collision‐induced and electron‐capture dissociations in linear ion trap time‐of‐flight mass spectrometryRapid Communications in Mass Spectrometry, 2007
- The use of mass spectrometry for the proteomic analysis of glycosylationProteomics, 2006
- Fragmentation reactions of deprotonated peptides containing proline. The proline effectJournal of Mass Spectrometry, 2005
- Analysis of O‐glycosylation site occupancy in bovine κ‐casein glycoforms separated by two‐dimensional gel electrophoresisProteomics, 2005
- Fragmentation ofN-linked glycans with a matrix-assisted laser desorption/ionization ion trap time-of-flight mass spectrometerRapid Communications in Mass Spectrometry, 2004
- Collision‐induced fragmentations of the (M‐H)− parent anions of underivatized peptides: An aid to structure determination and some unusual negative ion cleavagesMass Spectrometry Reviews, 2002
- A systematic nomenclature for carbohydrate fragmentations in FAB-MS/MS spectra of glycoconjugatesGlycoconjugate Journal, 1988