Polar flagellin glycan heterogeneity of Aeromonas hydrophila strain ATCC 7966T

dc.contributor.author
Fulton, Kelly M.
dc.contributor.author
Mendoza-Barberá, Elena
dc.contributor.author
Tomàs Magaña, Juan
dc.contributor.author
Twine, Susan M.
dc.contributor.author
Smith, Jeffrey C.
dc.contributor.author
Merino Montero, Susana
dc.date.accessioned
2026-03-03T23:53:16Z
dc.date.available
2026-03-03T23:53:16Z
dc.date.issued
2026-03-03T18:01:52Z
dc.date.issued
2025-05-01
dc.date.issued
2026-03-03T18:01:53Z
dc.date.issued
info:eu-repo/date/embargoEnd/2027-02-25
dc.identifier
0045-2068
dc.identifier
https://hdl.handle.net/2445/227836
dc.identifier
760108
dc.identifier.uri
https://hdl.handle.net/2445/227836
dc.description.abstract
Motile pathogens often rely upon flagellar motility as an essential virulence factor and in many species the structural flagellin protein is glycosylated. Flagellin glycosylation has been shown to be important for proper function of the flagellar filament in a number of bacterial species. Aeromonas hydrophila is a ubiquitous aquatic pathogen with a constitutively expressed polar flagellum. Using a suite of mass spectrometry techniques, the flagellin FlaA and FlaB structural proteins of A. hydrophila strain ATCC 7966T were shown to be glycosylated with significant microheterogeneity, macroheterogeneity, and metaheterogeneity. The primary linking sugar in this strain was a novel and previously unreported pseudaminic acid derivative with a mass of 422 Da. The pseudaminic acid derivative was followed in sequence by two hexoses, an N-acetylglucosamine (with additional variable secondary modification), and a deoxy N-acetylglucosamine derivative. These pentasaccharide glycans were observed modifying all eight modification sites. Hexasaccharides, which included an additional N-acetylhexosamine residue as the capping sugar, were observed exclusively modifying a pair of isobaric peptides from FlaA and FlaB. Interestingly, these isobaric peptides are immediately adjacent to a toll-like receptor 5 binding site in both protein sequences. Glycosylation status was also linked to motility, a critical bacterial virulence factor
dc.format
15 p.
dc.format
application/pdf
dc.language
eng
dc.publisher
Elsevier
dc.relation
Versió postprint del document publicat a: https://doi.org/10.1016/j.bioorg.2025.108300
dc.relation
Bioorganic Chemistry, 2025, vol. 158, p. 1-15
dc.relation
https://doi.org/10.1016/j.bioorg.2025.108300
dc.rights
cc-by-nc-nd (c) Elsevier, 2025
dc.rights
http://creativecommons.org/licenses/by-nc-nd/4.0/
dc.rights
info:eu-repo/semantics/embargoedAccess
dc.subject
Flagel·lats
dc.subject
Motilitat cel·lular
dc.subject
Espectrometria de masses
dc.subject
Flagellata
dc.subject
Cell motility
dc.subject
Mass spectrometry
dc.title
Polar flagellin glycan heterogeneity of Aeromonas hydrophila strain ATCC 7966T
dc.type
info:eu-repo/semantics/article
dc.type
info:eu-repo/semantics/acceptedVersion


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