Cargando…

Shigella sonnei infection of zebrafish reveals that O-antigen mediates neutrophil tolerance and dysentery incidence

Shigella flexneri is historically regarded as the primary agent of bacillary dysentery, yet the closely-related Shigella sonnei is replacing S. flexneri, especially in developing countries. The underlying reasons for this dramatic shift are mostly unknown. Using a zebrafish (Danio rerio) model of Sh...

Descripción completa

Detalles Bibliográficos
Autores principales: Torraca, Vincenzo, Kaforou, Myrsini, Watson, Jayne, Duggan, Gina M., Guerrero-Gutierrez, Hazel, Krokowski, Sina, Hollinshead, Michael, Clarke, Thomas B., Mostowy, Rafal J., Tomlinson, Gillian S., Sancho-Shimizu, Vanessa, Clements, Abigail, Mostowy, Serge
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6980646/
https://www.ncbi.nlm.nih.gov/pubmed/31830135
http://dx.doi.org/10.1371/journal.ppat.1008006
_version_ 1783490984995192832
author Torraca, Vincenzo
Kaforou, Myrsini
Watson, Jayne
Duggan, Gina M.
Guerrero-Gutierrez, Hazel
Krokowski, Sina
Hollinshead, Michael
Clarke, Thomas B.
Mostowy, Rafal J.
Tomlinson, Gillian S.
Sancho-Shimizu, Vanessa
Clements, Abigail
Mostowy, Serge
author_facet Torraca, Vincenzo
Kaforou, Myrsini
Watson, Jayne
Duggan, Gina M.
Guerrero-Gutierrez, Hazel
Krokowski, Sina
Hollinshead, Michael
Clarke, Thomas B.
Mostowy, Rafal J.
Tomlinson, Gillian S.
Sancho-Shimizu, Vanessa
Clements, Abigail
Mostowy, Serge
author_sort Torraca, Vincenzo
collection PubMed
description Shigella flexneri is historically regarded as the primary agent of bacillary dysentery, yet the closely-related Shigella sonnei is replacing S. flexneri, especially in developing countries. The underlying reasons for this dramatic shift are mostly unknown. Using a zebrafish (Danio rerio) model of Shigella infection, we discover that S. sonnei is more virulent than S. flexneri in vivo. Whole animal dual-RNAseq and testing of bacterial mutants suggest that S. sonnei virulence depends on its O-antigen oligosaccharide (which is unique among Shigella species). We show in vivo using zebrafish and ex vivo using human neutrophils that S. sonnei O-antigen can mediate neutrophil tolerance. Consistent with this, we demonstrate that O-antigen enables S. sonnei to resist phagolysosome acidification and promotes neutrophil cell death. Chemical inhibition or promotion of phagolysosome maturation respectively decreases and increases neutrophil control of S. sonnei and zebrafish survival. Strikingly, larvae primed with a sublethal dose of S. sonnei are protected against a secondary lethal dose of S. sonnei in an O-antigen-dependent manner, indicating that exposure to O-antigen can train the innate immune system against S. sonnei. Collectively, these findings reveal O-antigen as an important therapeutic target against bacillary dysentery, and may explain the rapidly increasing S. sonnei burden in developing countries.
format Online
Article
Text
id pubmed-6980646
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-69806462020-02-07 Shigella sonnei infection of zebrafish reveals that O-antigen mediates neutrophil tolerance and dysentery incidence Torraca, Vincenzo Kaforou, Myrsini Watson, Jayne Duggan, Gina M. Guerrero-Gutierrez, Hazel Krokowski, Sina Hollinshead, Michael Clarke, Thomas B. Mostowy, Rafal J. Tomlinson, Gillian S. Sancho-Shimizu, Vanessa Clements, Abigail Mostowy, Serge PLoS Pathog Research Article Shigella flexneri is historically regarded as the primary agent of bacillary dysentery, yet the closely-related Shigella sonnei is replacing S. flexneri, especially in developing countries. The underlying reasons for this dramatic shift are mostly unknown. Using a zebrafish (Danio rerio) model of Shigella infection, we discover that S. sonnei is more virulent than S. flexneri in vivo. Whole animal dual-RNAseq and testing of bacterial mutants suggest that S. sonnei virulence depends on its O-antigen oligosaccharide (which is unique among Shigella species). We show in vivo using zebrafish and ex vivo using human neutrophils that S. sonnei O-antigen can mediate neutrophil tolerance. Consistent with this, we demonstrate that O-antigen enables S. sonnei to resist phagolysosome acidification and promotes neutrophil cell death. Chemical inhibition or promotion of phagolysosome maturation respectively decreases and increases neutrophil control of S. sonnei and zebrafish survival. Strikingly, larvae primed with a sublethal dose of S. sonnei are protected against a secondary lethal dose of S. sonnei in an O-antigen-dependent manner, indicating that exposure to O-antigen can train the innate immune system against S. sonnei. Collectively, these findings reveal O-antigen as an important therapeutic target against bacillary dysentery, and may explain the rapidly increasing S. sonnei burden in developing countries. Public Library of Science 2019-12-12 /pmc/articles/PMC6980646/ /pubmed/31830135 http://dx.doi.org/10.1371/journal.ppat.1008006 Text en © 2019 Torraca et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Torraca, Vincenzo
Kaforou, Myrsini
Watson, Jayne
Duggan, Gina M.
Guerrero-Gutierrez, Hazel
Krokowski, Sina
Hollinshead, Michael
Clarke, Thomas B.
Mostowy, Rafal J.
Tomlinson, Gillian S.
Sancho-Shimizu, Vanessa
Clements, Abigail
Mostowy, Serge
Shigella sonnei infection of zebrafish reveals that O-antigen mediates neutrophil tolerance and dysentery incidence
title Shigella sonnei infection of zebrafish reveals that O-antigen mediates neutrophil tolerance and dysentery incidence
title_full Shigella sonnei infection of zebrafish reveals that O-antigen mediates neutrophil tolerance and dysentery incidence
title_fullStr Shigella sonnei infection of zebrafish reveals that O-antigen mediates neutrophil tolerance and dysentery incidence
title_full_unstemmed Shigella sonnei infection of zebrafish reveals that O-antigen mediates neutrophil tolerance and dysentery incidence
title_short Shigella sonnei infection of zebrafish reveals that O-antigen mediates neutrophil tolerance and dysentery incidence
title_sort shigella sonnei infection of zebrafish reveals that o-antigen mediates neutrophil tolerance and dysentery incidence
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6980646/
https://www.ncbi.nlm.nih.gov/pubmed/31830135
http://dx.doi.org/10.1371/journal.ppat.1008006
work_keys_str_mv AT torracavincenzo shigellasonneiinfectionofzebrafishrevealsthatoantigenmediatesneutrophiltoleranceanddysenteryincidence
AT kaforoumyrsini shigellasonneiinfectionofzebrafishrevealsthatoantigenmediatesneutrophiltoleranceanddysenteryincidence
AT watsonjayne shigellasonneiinfectionofzebrafishrevealsthatoantigenmediatesneutrophiltoleranceanddysenteryincidence
AT dugganginam shigellasonneiinfectionofzebrafishrevealsthatoantigenmediatesneutrophiltoleranceanddysenteryincidence
AT guerrerogutierrezhazel shigellasonneiinfectionofzebrafishrevealsthatoantigenmediatesneutrophiltoleranceanddysenteryincidence
AT krokowskisina shigellasonneiinfectionofzebrafishrevealsthatoantigenmediatesneutrophiltoleranceanddysenteryincidence
AT hollinsheadmichael shigellasonneiinfectionofzebrafishrevealsthatoantigenmediatesneutrophiltoleranceanddysenteryincidence
AT clarkethomasb shigellasonneiinfectionofzebrafishrevealsthatoantigenmediatesneutrophiltoleranceanddysenteryincidence
AT mostowyrafalj shigellasonneiinfectionofzebrafishrevealsthatoantigenmediatesneutrophiltoleranceanddysenteryincidence
AT tomlinsongillians shigellasonneiinfectionofzebrafishrevealsthatoantigenmediatesneutrophiltoleranceanddysenteryincidence
AT sanchoshimizuvanessa shigellasonneiinfectionofzebrafishrevealsthatoantigenmediatesneutrophiltoleranceanddysenteryincidence
AT clementsabigail shigellasonneiinfectionofzebrafishrevealsthatoantigenmediatesneutrophiltoleranceanddysenteryincidence
AT mostowyserge shigellasonneiinfectionofzebrafishrevealsthatoantigenmediatesneutrophiltoleranceanddysenteryincidence