The Vibrio cholerae colonization factor GbpA possesses a modular structure that governs binding to different host surfaces.
Vibrio cholerae is a bacterial pathogen that colonizes the chitinous exoskeleton of zooplankton as well as the human gastrointestinal tract. Colonization of these different niches involves an N-acetylglucosamine binding protein (GbpA) that has been reported to mediate bacterial attachment to both ma...
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2012-01-01
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Series: | PLoS Pathogens |
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doaj-770d539436de4006b01fbb1db03c7b292020-11-25T00:57:37ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742012-01-0181e100237310.1371/journal.ppat.1002373The Vibrio cholerae colonization factor GbpA possesses a modular structure that governs binding to different host surfaces.Edmond WongGustav Vaaje-KolstadAvishek GhoshRamon Hurtado-GuerreroPeter V KonarevAdel F M IbrahimDmitri I SvergunVincent G H EijsinkNabendu S ChatterjeeDaan M F van AaltenVibrio cholerae is a bacterial pathogen that colonizes the chitinous exoskeleton of zooplankton as well as the human gastrointestinal tract. Colonization of these different niches involves an N-acetylglucosamine binding protein (GbpA) that has been reported to mediate bacterial attachment to both marine chitin and mammalian intestinal mucin through an unknown molecular mechanism. We report structural studies that reveal that GbpA possesses an unusual, elongated, four-domain structure, with domains 1 and 4 showing structural homology to chitin binding domains. A glycan screen revealed that GbpA binds to GlcNAc oligosaccharides. Structure-guided GbpA truncation mutants show that domains 1 and 4 of GbpA interact with chitin in vitro, whereas in vivo complementation studies reveal that domain 1 is also crucial for mucin binding and intestinal colonization. Bacterial binding studies show that domains 2 and 3 bind to the V. cholerae surface. Finally, mouse virulence assays show that only the first three domains of GbpA are required for colonization. These results explain how GbpA provides structural/functional modular interactions between V. cholerae, intestinal epithelium and chitinous exoskeletons.http://europepmc.org/articles/PMC3257281?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Edmond Wong Gustav Vaaje-Kolstad Avishek Ghosh Ramon Hurtado-Guerrero Peter V Konarev Adel F M Ibrahim Dmitri I Svergun Vincent G H Eijsink Nabendu S Chatterjee Daan M F van Aalten |
spellingShingle |
Edmond Wong Gustav Vaaje-Kolstad Avishek Ghosh Ramon Hurtado-Guerrero Peter V Konarev Adel F M Ibrahim Dmitri I Svergun Vincent G H Eijsink Nabendu S Chatterjee Daan M F van Aalten The Vibrio cholerae colonization factor GbpA possesses a modular structure that governs binding to different host surfaces. PLoS Pathogens |
author_facet |
Edmond Wong Gustav Vaaje-Kolstad Avishek Ghosh Ramon Hurtado-Guerrero Peter V Konarev Adel F M Ibrahim Dmitri I Svergun Vincent G H Eijsink Nabendu S Chatterjee Daan M F van Aalten |
author_sort |
Edmond Wong |
title |
The Vibrio cholerae colonization factor GbpA possesses a modular structure that governs binding to different host surfaces. |
title_short |
The Vibrio cholerae colonization factor GbpA possesses a modular structure that governs binding to different host surfaces. |
title_full |
The Vibrio cholerae colonization factor GbpA possesses a modular structure that governs binding to different host surfaces. |
title_fullStr |
The Vibrio cholerae colonization factor GbpA possesses a modular structure that governs binding to different host surfaces. |
title_full_unstemmed |
The Vibrio cholerae colonization factor GbpA possesses a modular structure that governs binding to different host surfaces. |
title_sort |
vibrio cholerae colonization factor gbpa possesses a modular structure that governs binding to different host surfaces. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Pathogens |
issn |
1553-7366 1553-7374 |
publishDate |
2012-01-01 |
description |
Vibrio cholerae is a bacterial pathogen that colonizes the chitinous exoskeleton of zooplankton as well as the human gastrointestinal tract. Colonization of these different niches involves an N-acetylglucosamine binding protein (GbpA) that has been reported to mediate bacterial attachment to both marine chitin and mammalian intestinal mucin through an unknown molecular mechanism. We report structural studies that reveal that GbpA possesses an unusual, elongated, four-domain structure, with domains 1 and 4 showing structural homology to chitin binding domains. A glycan screen revealed that GbpA binds to GlcNAc oligosaccharides. Structure-guided GbpA truncation mutants show that domains 1 and 4 of GbpA interact with chitin in vitro, whereas in vivo complementation studies reveal that domain 1 is also crucial for mucin binding and intestinal colonization. Bacterial binding studies show that domains 2 and 3 bind to the V. cholerae surface. Finally, mouse virulence assays show that only the first three domains of GbpA are required for colonization. These results explain how GbpA provides structural/functional modular interactions between V. cholerae, intestinal epithelium and chitinous exoskeletons. |
url |
http://europepmc.org/articles/PMC3257281?pdf=render |
work_keys_str_mv |
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