Journal article

Simultaneous glycan-peptide characterization using hydrophilic interaction chromatography and parallel fragmentation by CID, higher energy collisional dissociation, and electron transfer dissociation MS applied to the N-linked glycoproteome of Campylobacter jejuni

NE Scott, BL Parker, AM Connolly, J Paulech, AVG Edwards, B Crossett, L Falconer, D Kolarich, SP Djordjevic, P Højrup, NH Packer, MR Larsen, SJ Cordwell

Molecular and Cellular Proteomics | AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC | Published : 2011

Abstract

Campylobacter jejuni is a gastrointestinal pathogen that is able to modify membrane and periplasmic proteins by the N-linked addition of a 7-residue glycan at the strict attachment motif (D/E)XNX(S/T). Strategies for a comprehensive analysis of the targets of glycosylation, however, are hampered by the resistance of the glycan-peptide bond to enzymatic digestion or β-elimination and have previously concentrated on soluble glycoproteins compatible with lectin affinity and gel-based approaches. We developed strategies for enriching C. jejuni HB93-13 glycopeptides using zwitterionic hydrophilic interaction chromatography and examined novel fragmentation, including collision-induced dissociation..

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University of Melbourne Researchers

Grants

Awarded by Australian Research Council (ARC)


Awarded by The University of Sydney


Awarded by Australian Research Council


Funding Acknowledgements

This work was supported in part by grants from the Australian Research Council (ARC Grant DP0664922) and The University of Sydney (Bridging Support Grant U1336).