Determination of glycopeptide structures by multistage mass spectrometry with low‐energy collision‐induced dissociation: comparison of electrospray ionization quadrupole ion trap and matrix‐assisted laser desorption/ionization quadrupole ion trap reflectron time‐of‐flight approaches
- 15 June 2004
- journal article
- research article
- Published by Wiley in Rapid Communications in Mass Spectrometry
- Vol. 18 (14) , 1575-1582
- https://doi.org/10.1002/rcm.1521
Abstract
Multistage mass spectrometry, as implemented using low‐energy collision‐induced dissociation (CID) analysis in three‐dimensional (3D) quadrupole ion traps (QITs), has become a powerful tool for the investigation of protein glycosylation. In addition to the well‐known combination of QITs with electrospray ionization (ESI), also a matrix‐assisted laser desorption/ionization—quadrupole ion trap—reflectron time‐of‐flight (MALDI‐QIT‐rTOF) mass spectrometer has recently become available. This study systematically investigates the differences between these types of instrument, as applied to characterization of glycopeptides from human antithrombin. The glycopeptides were obtained by tryptic digestion followed by lectin‐affinity purification. Some significant differences between the ESI‐QIT and MALDI‐QIT‐rTOF approaches appeared, most of them are causally related to the desorption/ionization process. The combination of a vacuum MALDI source with an ion‐trap analyzer accentuates some characteristic differences between MALDI and ESI due the longer time frame needed for the trapping process. In contrast to ESI, MALDI generated ions that exhibited considerable metastable fragmentation during trapping. The long time span of the QIT process (ms range) compared with that for conventional rTOF experiments (μs range) significantly magnified the extent of this metastable fragmentation. With the investigated glycopeptides, a complete depletion of the terminal sialic acids of the glycopeptides as well as a variety of other fragment ions was already found in the MS1 spectra from the MALDI‐QIT‐rTOF instrument. The positive ion low‐energy CID spectra (MS2) of the selected glycopeptides obtained using the two different QIT equipped instruments were found to be quite similar. In both approaches, fragmentation of the glycan and peptide structures occurred sequentially, allowing unambiguous sequence determination. In the case of ESI‐QIT‐MS, fragmentation of the glycan structure occurred at the MS2 stage and fragmentation of the peptide structure was obtained only at the MS3 stage, which indicates the necessity of multistage CID experiments for complete structure elucidation. The MALDI‐QIT‐rTOF instrument yielded both kinds of fragments at the MS2 stage but without mutual interference. Copyright © 2004 John Wiley & Sons, Ltd.Keywords
This publication has 21 references indexed in Scilit:
- Characterization of antithrombin III from human plasma by two‐dimensional gel electrophoresis and capillary electrophoretic methodsElectrophoresis, 2003
- MALDI Analysis ofBacilliin Spore Mixtures by Applying a Quadrupole Ion Trap Time-of-Flight Tandem Mass SpectrometerAnalytical Chemistry, 2003
- Matrix‐assisted laser desorption/ionization‐ quadrupole ion trap‐time of flight mass spectrometry sequencing resolves structures of unidentified peptides obtained by in‐gel tryptic digestion of haptoglobin derivatives from human plasma proteomesProteomics, 2003
- Analysis of high mass peptides using a novel matrix‐assisted laser desorption/ionisation quadrupole ion trap time‐of‐flight mass spectrometerRapid Communications in Mass Spectrometry, 2003
- The Oligosaccharide Side Chain on Asn-135 of α-Antithrombin, Absent in β-Antithrombin, Decreases the Heparin Affinity of the Inhibitor by Affecting the Heparin-Induced Conformational ChangeBiochemistry, 1997
- Analysis of Acidic Oligosaccharides and Glycopeptides by Matrix-Assisted Laser Desorption/Ionization Time-of-Flight Mass SpectrometryAnalytical Chemistry, 1996
- Protein glycosylationEuropean Journal of Biochemistry, 1993
- Site-specific carbohydrate identification in recombinant proteins using MALD-TOF MSAnalytical Chemistry, 1993
- Laser desorption ionization of proteins with molecular masses exceeding 10,000 daltonsAnalytical Chemistry, 1988
- A systematic nomenclature for carbohydrate fragmentations in FAB-MS/MS spectra of glycoconjugatesGlycoconjugate Journal, 1988