| Literature DB >> 32271005 |
He Zhu1, Shuaishuai Wang1, Ding Liu1, Lang Ding1, Congcong Chen1, Yunpeng Liu1, Zhigang Wu1, Roni Bollag2, Kebin Liu3, William Max Alexander4, Jun Yin1, Cheng Ma1, Lei Li1, Peng George Wang1.
Abstract
Precise assignment of sialylation linkages at the glycopeptide level is of importance in bottom-up glycoproteomics and an indispensable step to understand the function of glycoproteins in pathogen-host interactions and cancer progression. Even though some efforts have been dedicated to the discrimination of α2,3/α2,6-sialylated isomers, unambiguous identification of sialoglycopeptide isomers is still needed. Herein, we developed an innovative glycosyltransferase labeling assisted mass spectrometry (GLAMS) strategy. After specific enzymatic labeling, oxonium ions from higher-energy C-trap dissociation (HCD) fragmentation of α2,3-sailoglycopeptides then generate unique reporters to distinctly differentiate those of α2,6-sailoglycopeptide isomers. With this strategy, a total of 1236 linkage-specific sialoglycopeptides were successfully identified from 161 glycoproteins in human serum.Entities:
Year: 2020 PMID: 32271005 PMCID: PMC7750919 DOI: 10.1021/acs.analchem.9b05068
Source DB: PubMed Journal: Anal Chem ISSN: 0003-2700 Impact factor: 6.986