Cargando…

Contribution of sortase SrtA2 to Lactobacillus casei BL23 inhibition of Staphylococcus aureus internalization into bovine mammary epithelial cells

Probiotics have been considered as a promising strategy to prevent various diseases in both humans and animals. This approach has gained interest in recent years as a potential means to control bovine mastitis. In a previous study, we found that several L. casei strains, including BL23, were able to...

Descripción completa

Detalles Bibliográficos
Autores principales: Souza, Renata F. S., Jardin, Julien, Cauty, Chantal, Rault, Lucie, Bouchard, Damien S., Bermúdez-Humarán, Luis G., Langella, Philippe, Monedero, Vicente, Seyffert, Núbia, Azevedo, Vasco, Le Loir, Yves, Even, Sergine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5360332/
https://www.ncbi.nlm.nih.gov/pubmed/28323870
http://dx.doi.org/10.1371/journal.pone.0174060
_version_ 1782516575750848512
author Souza, Renata F. S.
Jardin, Julien
Cauty, Chantal
Rault, Lucie
Bouchard, Damien S.
Bermúdez-Humarán, Luis G.
Langella, Philippe
Monedero, Vicente
Seyffert, Núbia
Azevedo, Vasco
Le Loir, Yves
Even, Sergine
author_facet Souza, Renata F. S.
Jardin, Julien
Cauty, Chantal
Rault, Lucie
Bouchard, Damien S.
Bermúdez-Humarán, Luis G.
Langella, Philippe
Monedero, Vicente
Seyffert, Núbia
Azevedo, Vasco
Le Loir, Yves
Even, Sergine
author_sort Souza, Renata F. S.
collection PubMed
description Probiotics have been considered as a promising strategy to prevent various diseases in both humans and animals. This approach has gained interest in recent years as a potential means to control bovine mastitis. In a previous study, we found that several L. casei strains, including BL23, were able to inhibit the internalization of S. aureus, a major etiologic agent of mastitis, into bovine mammary epithelial cells (bMEC). This antagonism required a direct contact between L. casei and bMEC or S. aureus, suggesting the inhibition relied on interactions between L. casei cell surface components and bMEC. In this study, we have investigated the impact of some candidates which likely influence bacteria host cell interactions. We have shown that L. casei BL23 fbpA retained its inhibitory potential, indicating that L. casei BL23 antagonism did not rely (solely) on competition between S. aureus and L. casei fibronectin-binding proteins for adhesion to bMEC. We have then investigated the impact of four sortase mutants, srtA1, srtA2, srtC1 and srtC2, and a double mutant (srtA1-srtA2) on L. casei BL23 inhibitory potential. Sortases are responsible for the anchoring on the bacterial cell wall of LPXTG-proteins, which reportedly play an important role in bacteria-host cell interaction. All the srt mutants tested presented a reduced inhibition capacity, the most pronounced effect being observed with the srtA2 mutant. A lower internalization capacity of L. casei srtA2 into bMEC was also observed. This was associated with several changes at the surface of L. casei BL23 srtA2 compared to the wild type (wt) strain, including altered abundance of some LPXTG- and moonlighting proteins, and modifications of cell wall structure. These results strongly support the role of sortase A2 in L. casei BL23 inhibition against S. aureus internalization. Deciphering the contribution of the cell surface components altered in srtA2 strain in the inhibition will require further investigation.
format Online
Article
Text
id pubmed-5360332
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-53603322017-04-06 Contribution of sortase SrtA2 to Lactobacillus casei BL23 inhibition of Staphylococcus aureus internalization into bovine mammary epithelial cells Souza, Renata F. S. Jardin, Julien Cauty, Chantal Rault, Lucie Bouchard, Damien S. Bermúdez-Humarán, Luis G. Langella, Philippe Monedero, Vicente Seyffert, Núbia Azevedo, Vasco Le Loir, Yves Even, Sergine PLoS One Research Article Probiotics have been considered as a promising strategy to prevent various diseases in both humans and animals. This approach has gained interest in recent years as a potential means to control bovine mastitis. In a previous study, we found that several L. casei strains, including BL23, were able to inhibit the internalization of S. aureus, a major etiologic agent of mastitis, into bovine mammary epithelial cells (bMEC). This antagonism required a direct contact between L. casei and bMEC or S. aureus, suggesting the inhibition relied on interactions between L. casei cell surface components and bMEC. In this study, we have investigated the impact of some candidates which likely influence bacteria host cell interactions. We have shown that L. casei BL23 fbpA retained its inhibitory potential, indicating that L. casei BL23 antagonism did not rely (solely) on competition between S. aureus and L. casei fibronectin-binding proteins for adhesion to bMEC. We have then investigated the impact of four sortase mutants, srtA1, srtA2, srtC1 and srtC2, and a double mutant (srtA1-srtA2) on L. casei BL23 inhibitory potential. Sortases are responsible for the anchoring on the bacterial cell wall of LPXTG-proteins, which reportedly play an important role in bacteria-host cell interaction. All the srt mutants tested presented a reduced inhibition capacity, the most pronounced effect being observed with the srtA2 mutant. A lower internalization capacity of L. casei srtA2 into bMEC was also observed. This was associated with several changes at the surface of L. casei BL23 srtA2 compared to the wild type (wt) strain, including altered abundance of some LPXTG- and moonlighting proteins, and modifications of cell wall structure. These results strongly support the role of sortase A2 in L. casei BL23 inhibition against S. aureus internalization. Deciphering the contribution of the cell surface components altered in srtA2 strain in the inhibition will require further investigation. Public Library of Science 2017-03-21 /pmc/articles/PMC5360332/ /pubmed/28323870 http://dx.doi.org/10.1371/journal.pone.0174060 Text en © 2017 Souza 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
Souza, Renata F. S.
Jardin, Julien
Cauty, Chantal
Rault, Lucie
Bouchard, Damien S.
Bermúdez-Humarán, Luis G.
Langella, Philippe
Monedero, Vicente
Seyffert, Núbia
Azevedo, Vasco
Le Loir, Yves
Even, Sergine
Contribution of sortase SrtA2 to Lactobacillus casei BL23 inhibition of Staphylococcus aureus internalization into bovine mammary epithelial cells
title Contribution of sortase SrtA2 to Lactobacillus casei BL23 inhibition of Staphylococcus aureus internalization into bovine mammary epithelial cells
title_full Contribution of sortase SrtA2 to Lactobacillus casei BL23 inhibition of Staphylococcus aureus internalization into bovine mammary epithelial cells
title_fullStr Contribution of sortase SrtA2 to Lactobacillus casei BL23 inhibition of Staphylococcus aureus internalization into bovine mammary epithelial cells
title_full_unstemmed Contribution of sortase SrtA2 to Lactobacillus casei BL23 inhibition of Staphylococcus aureus internalization into bovine mammary epithelial cells
title_short Contribution of sortase SrtA2 to Lactobacillus casei BL23 inhibition of Staphylococcus aureus internalization into bovine mammary epithelial cells
title_sort contribution of sortase srta2 to lactobacillus casei bl23 inhibition of staphylococcus aureus internalization into bovine mammary epithelial cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5360332/
https://www.ncbi.nlm.nih.gov/pubmed/28323870
http://dx.doi.org/10.1371/journal.pone.0174060
work_keys_str_mv AT souzarenatafs contributionofsortasesrta2tolactobacilluscaseibl23inhibitionofstaphylococcusaureusinternalizationintobovinemammaryepithelialcells
AT jardinjulien contributionofsortasesrta2tolactobacilluscaseibl23inhibitionofstaphylococcusaureusinternalizationintobovinemammaryepithelialcells
AT cautychantal contributionofsortasesrta2tolactobacilluscaseibl23inhibitionofstaphylococcusaureusinternalizationintobovinemammaryepithelialcells
AT raultlucie contributionofsortasesrta2tolactobacilluscaseibl23inhibitionofstaphylococcusaureusinternalizationintobovinemammaryepithelialcells
AT boucharddamiens contributionofsortasesrta2tolactobacilluscaseibl23inhibitionofstaphylococcusaureusinternalizationintobovinemammaryepithelialcells
AT bermudezhumaranluisg contributionofsortasesrta2tolactobacilluscaseibl23inhibitionofstaphylococcusaureusinternalizationintobovinemammaryepithelialcells
AT langellaphilippe contributionofsortasesrta2tolactobacilluscaseibl23inhibitionofstaphylococcusaureusinternalizationintobovinemammaryepithelialcells
AT monederovicente contributionofsortasesrta2tolactobacilluscaseibl23inhibitionofstaphylococcusaureusinternalizationintobovinemammaryepithelialcells
AT seyffertnubia contributionofsortasesrta2tolactobacilluscaseibl23inhibitionofstaphylococcusaureusinternalizationintobovinemammaryepithelialcells
AT azevedovasco contributionofsortasesrta2tolactobacilluscaseibl23inhibitionofstaphylococcusaureusinternalizationintobovinemammaryepithelialcells
AT leloiryves contributionofsortasesrta2tolactobacilluscaseibl23inhibitionofstaphylococcusaureusinternalizationintobovinemammaryepithelialcells
AT evensergine contributionofsortasesrta2tolactobacilluscaseibl23inhibitionofstaphylococcusaureusinternalizationintobovinemammaryepithelialcells