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Distinctive MS/MS Fragmentation Pathways of Glycopeptide‐Generated Oxonium Ions Provide Evidence of the Glycan Structure
Authors:Jin Yu  Manuel Schorlemer  Alejandro Gomez Toledo  Christian Pett  Dr. Carina Sihlbom  Prof. Göran Larson  Dr. Ulrika Westerlind  Dr. Jonas Nilsson
Affiliation:1. Gesellschaft zur F?rderung der Analytischen Wissenschaften e.V. ISAS-Leibniz Institute for Analytical Sciences, Dortmund, Germany;2. Department of Clinical Chemistry and Transfusion Medicine, Institute of Biomedicine, University of Gothenburg, Gothenburg, Sweden;3. Proteomics Core Facility, University of Gothenburg, Gothenburg, Sweden
Abstract:Post‐translational glycosylation of proteins play key roles in cellular processes and the site‐specific characterisation of glycan structures is critical to understanding these events. Given the challenges regarding identification of glycan isomers, glycoproteomic studies generally rely on the assumption of conserved biosynthetic pathways. However, in a recent study, we found characteristically different HexNAc oxonium ion fragmentation patterns that depend on glycan structure. Such patterns could be used to distinguish between glycopeptide structural isomers. To acquire a mechanistic insight, deuterium‐labelled glycopeptides were prepared and analysed. We found that the HexNAc‐derived m/z 126 and 144 oxonium ions, differing in mass by H2O, had completely different structures and that high‐mannose N‐glycopeptides generated abundant Hex‐derived oxonium ions. We describe the oxonium ion decomposition mechanisms and the relative abundance of oxonium ions as a function of collision energy for a number of well‐defined glycan structures, which provide important information for future glycoproteomic studies.
Keywords:glycopeptides  mass spectrometry  protein modifications  structural biology  structure elucidation
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