Cargando…

A Nasal Epithelial Receptor for Staphylococcus aureus WTA Governs Adhesion to Epithelial Cells and Modulates Nasal Colonization

Nasal colonization is a major risk factor for S. aureus infections. The mechanisms responsible for colonization are still not well understood and involve several factors on the host and the bacterial side. One key factor is the cell wall teichoic acid (WTA) of S. aureus, which governs direct interac...

Descripción completa

Detalles Bibliográficos
Autores principales: Baur, Stefanie, Rautenberg, Maren, Faulstich, Manuela, Grau, Timo, Severin, Yannik, Unger, Clemens, Hoffmann, Wolfgang H., Rudel, Thomas, Autenrieth, Ingo B., Weidenmaier, Christopher
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4006915/
https://www.ncbi.nlm.nih.gov/pubmed/24788600
http://dx.doi.org/10.1371/journal.ppat.1004089
_version_ 1782314288418914304
author Baur, Stefanie
Rautenberg, Maren
Faulstich, Manuela
Grau, Timo
Severin, Yannik
Unger, Clemens
Hoffmann, Wolfgang H.
Rudel, Thomas
Autenrieth, Ingo B.
Weidenmaier, Christopher
author_facet Baur, Stefanie
Rautenberg, Maren
Faulstich, Manuela
Grau, Timo
Severin, Yannik
Unger, Clemens
Hoffmann, Wolfgang H.
Rudel, Thomas
Autenrieth, Ingo B.
Weidenmaier, Christopher
author_sort Baur, Stefanie
collection PubMed
description Nasal colonization is a major risk factor for S. aureus infections. The mechanisms responsible for colonization are still not well understood and involve several factors on the host and the bacterial side. One key factor is the cell wall teichoic acid (WTA) of S. aureus, which governs direct interactions with nasal epithelial surfaces. We report here the first receptor for the cell wall glycopolymer WTA on nasal epithelial cells. In several assay systems this type F-scavenger receptor, termed SREC-I, bound WTA in a charge dependent manner and mediated adhesion to nasal epithelial cells in vitro. The impact of WTA and SREC-I interaction on epithelial adhesion was especially pronounced under shear stress, which resembles the conditions found in the nasal cavity. Most importantly, we demonstrate here a key role of the WTA-receptor interaction in a cotton rat model of nasal colonization. When we inhibited WTA mediated adhesion with a SREC-I antibody, nasal colonization in the animal model was strongly reduced at the early onset of colonization. More importantly, colonization stayed low over an extended period of 6 days. Therefore we propose targeting of this glycopolymer-receptor interaction as a novel strategy to prevent or control S. aureus nasal colonization.
format Online
Article
Text
id pubmed-4006915
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-40069152014-05-09 A Nasal Epithelial Receptor for Staphylococcus aureus WTA Governs Adhesion to Epithelial Cells and Modulates Nasal Colonization Baur, Stefanie Rautenberg, Maren Faulstich, Manuela Grau, Timo Severin, Yannik Unger, Clemens Hoffmann, Wolfgang H. Rudel, Thomas Autenrieth, Ingo B. Weidenmaier, Christopher PLoS Pathog Research Article Nasal colonization is a major risk factor for S. aureus infections. The mechanisms responsible for colonization are still not well understood and involve several factors on the host and the bacterial side. One key factor is the cell wall teichoic acid (WTA) of S. aureus, which governs direct interactions with nasal epithelial surfaces. We report here the first receptor for the cell wall glycopolymer WTA on nasal epithelial cells. In several assay systems this type F-scavenger receptor, termed SREC-I, bound WTA in a charge dependent manner and mediated adhesion to nasal epithelial cells in vitro. The impact of WTA and SREC-I interaction on epithelial adhesion was especially pronounced under shear stress, which resembles the conditions found in the nasal cavity. Most importantly, we demonstrate here a key role of the WTA-receptor interaction in a cotton rat model of nasal colonization. When we inhibited WTA mediated adhesion with a SREC-I antibody, nasal colonization in the animal model was strongly reduced at the early onset of colonization. More importantly, colonization stayed low over an extended period of 6 days. Therefore we propose targeting of this glycopolymer-receptor interaction as a novel strategy to prevent or control S. aureus nasal colonization. Public Library of Science 2014-05-01 /pmc/articles/PMC4006915/ /pubmed/24788600 http://dx.doi.org/10.1371/journal.ppat.1004089 Text en © 2014 Baur 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
Baur, Stefanie
Rautenberg, Maren
Faulstich, Manuela
Grau, Timo
Severin, Yannik
Unger, Clemens
Hoffmann, Wolfgang H.
Rudel, Thomas
Autenrieth, Ingo B.
Weidenmaier, Christopher
A Nasal Epithelial Receptor for Staphylococcus aureus WTA Governs Adhesion to Epithelial Cells and Modulates Nasal Colonization
title A Nasal Epithelial Receptor for Staphylococcus aureus WTA Governs Adhesion to Epithelial Cells and Modulates Nasal Colonization
title_full A Nasal Epithelial Receptor for Staphylococcus aureus WTA Governs Adhesion to Epithelial Cells and Modulates Nasal Colonization
title_fullStr A Nasal Epithelial Receptor for Staphylococcus aureus WTA Governs Adhesion to Epithelial Cells and Modulates Nasal Colonization
title_full_unstemmed A Nasal Epithelial Receptor for Staphylococcus aureus WTA Governs Adhesion to Epithelial Cells and Modulates Nasal Colonization
title_short A Nasal Epithelial Receptor for Staphylococcus aureus WTA Governs Adhesion to Epithelial Cells and Modulates Nasal Colonization
title_sort nasal epithelial receptor for staphylococcus aureus wta governs adhesion to epithelial cells and modulates nasal colonization
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4006915/
https://www.ncbi.nlm.nih.gov/pubmed/24788600
http://dx.doi.org/10.1371/journal.ppat.1004089
work_keys_str_mv AT baurstefanie anasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT rautenbergmaren anasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT faulstichmanuela anasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT grautimo anasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT severinyannik anasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT ungerclemens anasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT hoffmannwolfgangh anasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT rudelthomas anasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT autenriethingob anasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT weidenmaierchristopher anasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT baurstefanie nasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT rautenbergmaren nasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT faulstichmanuela nasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT grautimo nasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT severinyannik nasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT ungerclemens nasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT hoffmannwolfgangh nasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT rudelthomas nasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT autenriethingob nasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization
AT weidenmaierchristopher nasalepithelialreceptorforstaphylococcusaureuswtagovernsadhesiontoepithelialcellsandmodulatesnasalcolonization