Cargando…

An O Antigen Capsule Modulates Bacterial Pathogenesis in Shigella sonnei

Shigella is the leading cause for dysentery worldwide. Together with several virulence factors employed for invasion, the presence and length of the O antigen (OAg) of the lipopolysaccharide (LPS) plays a key role in pathogenesis. S. flexneri 2a has a bimodal OAg chain length distribution regulated...

Descripción completa

Detalles Bibliográficos
Autores principales: Caboni, Mariaelena, Pédron, Thierry, Rossi, Omar, Goulding, David, Pickard, Derek, Citiulo, Francesco, MacLennan, Calman A., Dougan, Gordon, Thomson, Nicholas R., Saul, Allan, Sansonetti, Philippe J., Gerke, Christiane
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4368438/
https://www.ncbi.nlm.nih.gov/pubmed/25794007
http://dx.doi.org/10.1371/journal.ppat.1004749
_version_ 1782362625079771136
author Caboni, Mariaelena
Pédron, Thierry
Rossi, Omar
Goulding, David
Pickard, Derek
Citiulo, Francesco
MacLennan, Calman A.
Dougan, Gordon
Thomson, Nicholas R.
Saul, Allan
Sansonetti, Philippe J.
Gerke, Christiane
author_facet Caboni, Mariaelena
Pédron, Thierry
Rossi, Omar
Goulding, David
Pickard, Derek
Citiulo, Francesco
MacLennan, Calman A.
Dougan, Gordon
Thomson, Nicholas R.
Saul, Allan
Sansonetti, Philippe J.
Gerke, Christiane
author_sort Caboni, Mariaelena
collection PubMed
description Shigella is the leading cause for dysentery worldwide. Together with several virulence factors employed for invasion, the presence and length of the O antigen (OAg) of the lipopolysaccharide (LPS) plays a key role in pathogenesis. S. flexneri 2a has a bimodal OAg chain length distribution regulated in a growth-dependent manner, whereas S. sonnei LPS comprises a monomodal OAg. Here we reveal that S. sonnei, but not S. flexneri 2a, possesses a high molecular weight, immunogenic group 4 capsule, characterized by structural similarity to LPS OAg. We found that a galU mutant of S. sonnei, that is unable to produce a complete LPS with OAg attached, can still assemble OAg material on the cell surface, but a galU mutant of S. flexneri 2a cannot. High molecular weight material not linked to the LPS was purified from S. sonnei and confirmed by NMR to contain the specific sugars of the S. sonnei OAg. Deletion of genes homologous to the group 4 capsule synthesis cluster, previously described in Escherichia coli, abolished the generation of the high molecular weight OAg material. This OAg capsule strongly affects the virulence of S. sonnei. Uncapsulated knockout bacteria were highly invasive in vitro and strongly inflammatory in the rabbit intestine. But, the lack of capsule reduced the ability of S. sonnei to resist complement-mediated killing and to spread from the gut to peripheral organs. In contrast, overexpression of the capsule decreased invasiveness in vitro and inflammation in vivo compared to the wild type. In conclusion, the data indicate that in S. sonnei expression of the capsule modulates bacterial pathogenesis resulting in balanced capabilities to invade and persist in the host environment.
format Online
Article
Text
id pubmed-4368438
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-43684382015-03-27 An O Antigen Capsule Modulates Bacterial Pathogenesis in Shigella sonnei Caboni, Mariaelena Pédron, Thierry Rossi, Omar Goulding, David Pickard, Derek Citiulo, Francesco MacLennan, Calman A. Dougan, Gordon Thomson, Nicholas R. Saul, Allan Sansonetti, Philippe J. Gerke, Christiane PLoS Pathog Research Article Shigella is the leading cause for dysentery worldwide. Together with several virulence factors employed for invasion, the presence and length of the O antigen (OAg) of the lipopolysaccharide (LPS) plays a key role in pathogenesis. S. flexneri 2a has a bimodal OAg chain length distribution regulated in a growth-dependent manner, whereas S. sonnei LPS comprises a monomodal OAg. Here we reveal that S. sonnei, but not S. flexneri 2a, possesses a high molecular weight, immunogenic group 4 capsule, characterized by structural similarity to LPS OAg. We found that a galU mutant of S. sonnei, that is unable to produce a complete LPS with OAg attached, can still assemble OAg material on the cell surface, but a galU mutant of S. flexneri 2a cannot. High molecular weight material not linked to the LPS was purified from S. sonnei and confirmed by NMR to contain the specific sugars of the S. sonnei OAg. Deletion of genes homologous to the group 4 capsule synthesis cluster, previously described in Escherichia coli, abolished the generation of the high molecular weight OAg material. This OAg capsule strongly affects the virulence of S. sonnei. Uncapsulated knockout bacteria were highly invasive in vitro and strongly inflammatory in the rabbit intestine. But, the lack of capsule reduced the ability of S. sonnei to resist complement-mediated killing and to spread from the gut to peripheral organs. In contrast, overexpression of the capsule decreased invasiveness in vitro and inflammation in vivo compared to the wild type. In conclusion, the data indicate that in S. sonnei expression of the capsule modulates bacterial pathogenesis resulting in balanced capabilities to invade and persist in the host environment. Public Library of Science 2015-03-20 /pmc/articles/PMC4368438/ /pubmed/25794007 http://dx.doi.org/10.1371/journal.ppat.1004749 Text en © 2015 Caboni 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Caboni, Mariaelena
Pédron, Thierry
Rossi, Omar
Goulding, David
Pickard, Derek
Citiulo, Francesco
MacLennan, Calman A.
Dougan, Gordon
Thomson, Nicholas R.
Saul, Allan
Sansonetti, Philippe J.
Gerke, Christiane
An O Antigen Capsule Modulates Bacterial Pathogenesis in Shigella sonnei
title An O Antigen Capsule Modulates Bacterial Pathogenesis in Shigella sonnei
title_full An O Antigen Capsule Modulates Bacterial Pathogenesis in Shigella sonnei
title_fullStr An O Antigen Capsule Modulates Bacterial Pathogenesis in Shigella sonnei
title_full_unstemmed An O Antigen Capsule Modulates Bacterial Pathogenesis in Shigella sonnei
title_short An O Antigen Capsule Modulates Bacterial Pathogenesis in Shigella sonnei
title_sort o antigen capsule modulates bacterial pathogenesis in shigella sonnei
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4368438/
https://www.ncbi.nlm.nih.gov/pubmed/25794007
http://dx.doi.org/10.1371/journal.ppat.1004749
work_keys_str_mv AT cabonimariaelena anoantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT pedronthierry anoantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT rossiomar anoantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT gouldingdavid anoantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT pickardderek anoantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT citiulofrancesco anoantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT maclennancalmana anoantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT dougangordon anoantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT thomsonnicholasr anoantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT saulallan anoantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT sansonettiphilippej anoantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT gerkechristiane anoantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT cabonimariaelena oantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT pedronthierry oantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT rossiomar oantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT gouldingdavid oantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT pickardderek oantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT citiulofrancesco oantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT maclennancalmana oantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT dougangordon oantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT thomsonnicholasr oantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT saulallan oantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT sansonettiphilippej oantigencapsulemodulatesbacterialpathogenesisinshigellasonnei
AT gerkechristiane oantigencapsulemodulatesbacterialpathogenesisinshigellasonnei