Host‐derived O ‐glycans inhibit toxigenic conversion by a virulence‐encoding phage in Vibrio cholerae

Abstract: Pandemic and endemic strains of Vibrio cholerae arise from toxigenic conversion by the CTXφ bacteriophage, a process by which CTXφ infects nontoxigenic strains of V. cholerae. CTXφ encodes the cholera toxin, an enterotoxin responsible for the watery diarrhea associated with cholera infections. Despite the critical role of CTXφ during infections, signals that affect CTXφ‐driven toxigenic conversion or expression of the CTXφ‐encoded cholera toxin remain poorly characterized, particularly in the context of the gut mucosa. Here, we identify mucin polymers as potent regulators of CTXφ‐driven pathogenicity in V. cholerae. Our results indicate that mucin‐associated O‐glycans block toxigenic conversion by CTXφ and suppress the expression of CTXφ‐related virulence factors, including the toxin co‐regulated pilus and cholera toxin, by interfering with the TcpP/ToxR/ToxT virulence pathway. By synthesizing individual mucin glycan structures de novo, we identify the Core 2 motif as the critical structure governing this virulence attenuation. Overall, our results highlight a novel mechanism by which mucins and their associated O‐glycan structures affect CTXφ‐mediated evolution and pathogenicity of V. cholerae, underscoring the potential regulatory power housed within mucus.

Standort
Deutsche Nationalbibliothek Frankfurt am Main
Umfang
Online-Ressource
Sprache
Englisch

Erschienen in
Host‐derived O ‐glycans inhibit toxigenic conversion by a virulence‐encoding phage in Vibrio cholerae ; day:12 ; month:12 ; year:2022 ; extent:13
The EMBO journal / European Molecular Biology Organization ; (12.12.2022) (gesamt 13)

Urheber
Wang, Benjamin X.
Takagi, Julie
McShane, Abigail
Park, Jin Hwan
Aoki, Kazuhiro
Griffin, Catherine
Teschler, Jennifer
Kitts, Giordan
Minzer, Giulietta
Tiemeyer, Michael
Hevey, Rachel
Yildiz, Fitnat
Ribbeck, Katharina

DOI
10.15252/embj.2022111562
URN
urn:nbn:de:101:1-2022121214201184276152
Rechteinformation
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Letzte Aktualisierung
15.08.2025, 07:24 MESZ

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Beteiligte

  • Wang, Benjamin X.
  • Takagi, Julie
  • McShane, Abigail
  • Park, Jin Hwan
  • Aoki, Kazuhiro
  • Griffin, Catherine
  • Teschler, Jennifer
  • Kitts, Giordan
  • Minzer, Giulietta
  • Tiemeyer, Michael
  • Hevey, Rachel
  • Yildiz, Fitnat
  • Ribbeck, Katharina

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