ArticleJournal of proteome research2024
Quantification and Site-Specific Analysis of Co-occupied N- and O-Glycopeptides.
Article in Journal of proteome research, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- Site-specific O-glycans influence lacritin structure and multimerization in tears.Protein science : a publication of the Protein Society · 2026Article
- Site-specific O-glycans influence lacritin structure and multimerization in tears.bioRxiv : the preprint server for biology · 2026Article
- Cetacean coronavirus spikes highlight S glycoprotein structural plasticity.PLoS pathogens · 2026Article
- Protocol for simultaneous profiling of N- and O-glycans on glycoproteins using a one-pot format.STAR protocols · 2026Article
- Decoding the complex substrate specificities of GalNAc-Ts.Glycobiology · 2025Review
- PNGaseF-Generated N-Glycans Adduct onto Peptides in the Gas Phase.Journal of the American Society for Mass Spectrometry · 2025Article
- RCL glycosylation of serum corticosteroid-binding globulin: implications in cortisol delivery and septic shock.Glycobiology · 2025Article
- Autonomous Dissociation-type Selection for Glycoproteomics Using a Real-Time Library Search.Journal of proteome research · 2024Article
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Abstract
Protein glycosylation is a complex post-translational modification that is generally classified as N- or O-linked. Site-specific analysis of glycopeptides is accomplished with a variety of fragmentation methods, depending on the type of glycosylation being investigated and the instrumentation available. For instance, collisional dissociation methods are frequently used for N-glycoproteomic analysis with the assumption that one N-sequon exists per tryptic peptide. Alternatively, electron-based methods are preferable for O-glycosite localization. However, the presence of simultaneously N- and O-glycosylated peptides could suggest the necessity of electron-based fragmentation methods for N-glycoproteomics, which is not commonly performed. Thus, we quantified the prevalence of N- and O-glycopeptides in mucins and other glycoproteins. A much higher frequency of co-occupancy within mucins was detected whereas only a negligible occurrence occurred within nonmucin glycoproteins. This was demonstrated from analyses of recombinant and/or purified proteins, as well as more complex samples. Where co-occupancy occurred, O-glycosites were frequently localized to the Ser/Thr within the N-sequon. Additionally, we found that O-glycans in close proximity to the occupied Asn were predominantly unelaborated core 1 structures, while those further away were more extended. Overall, we demonstrate electron-based methods are required for robust site-specific analysis of mucins, wherein co-occupancy is more prevalent. Conversely, collisional methods are generally sufficient for analyses of other types of glycoproteins.
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