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Staphylococcus aureus Exploits a Non-ribosomal Cyclic Dipeptide to Modulate Survival within Epithelial Cells and Phagocytes

Community-acquired (CA) Staphylococcus aureus cause various diseases even in healthy individuals. Enhanced virulence of CA-strains is partly attributed to increased production of toxins such as phenol-soluble modulins (PSM). The pathogen is internalized efficiently by mammalian host cells and intrac...

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Autores principales: Blättner, Sebastian, Das, Sudip, Paprotka, Kerstin, Eilers, Ursula, Krischke, Markus, Kretschmer, Dorothee, Remmele, Christian W., Dittrich, Marcus, Müller, Tobias, Schuelein-Voelk, Christina, Hertlein, Tobias, Mueller, Martin J., Huettel, Bruno, Reinhardt, Richard, Ohlsen, Knut, Rudel, Thomas, Fraunholz, Martin J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5025175/
https://www.ncbi.nlm.nih.gov/pubmed/27632173
http://dx.doi.org/10.1371/journal.ppat.1005857
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author Blättner, Sebastian
Das, Sudip
Paprotka, Kerstin
Eilers, Ursula
Krischke, Markus
Kretschmer, Dorothee
Remmele, Christian W.
Dittrich, Marcus
Müller, Tobias
Schuelein-Voelk, Christina
Hertlein, Tobias
Mueller, Martin J.
Huettel, Bruno
Reinhardt, Richard
Ohlsen, Knut
Rudel, Thomas
Fraunholz, Martin J.
author_facet Blättner, Sebastian
Das, Sudip
Paprotka, Kerstin
Eilers, Ursula
Krischke, Markus
Kretschmer, Dorothee
Remmele, Christian W.
Dittrich, Marcus
Müller, Tobias
Schuelein-Voelk, Christina
Hertlein, Tobias
Mueller, Martin J.
Huettel, Bruno
Reinhardt, Richard
Ohlsen, Knut
Rudel, Thomas
Fraunholz, Martin J.
author_sort Blättner, Sebastian
collection PubMed
description Community-acquired (CA) Staphylococcus aureus cause various diseases even in healthy individuals. Enhanced virulence of CA-strains is partly attributed to increased production of toxins such as phenol-soluble modulins (PSM). The pathogen is internalized efficiently by mammalian host cells and intracellular S. aureus has recently been shown to contribute to disease. Upon internalization, cytotoxic S. aureus strains can disrupt phagosomal membranes and kill host cells in a PSM-dependent manner. However, PSM are not sufficient for these processes. Here we screened for factors required for intracellular S. aureus virulence. We infected escape reporter host cells with strains from an established transposon mutant library and detected phagosomal escape rates using automated microscopy. We thereby, among other factors, identified a non-ribosomal peptide synthetase (NRPS) to be required for efficient phagosomal escape and intracellular survival of S. aureus as well as induction of host cell death. By genetic complementation as well as supplementation with the synthetic NRPS product, the cyclic dipeptide phevalin, wild-type phenotypes were restored. We further demonstrate that the NRPS is contributing to virulence in a mouse pneumonia model. Together, our data illustrate a hitherto unrecognized function of the S. aureus NRPS and its dipeptide product during S. aureus infection.
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spelling pubmed-50251752016-09-27 Staphylococcus aureus Exploits a Non-ribosomal Cyclic Dipeptide to Modulate Survival within Epithelial Cells and Phagocytes Blättner, Sebastian Das, Sudip Paprotka, Kerstin Eilers, Ursula Krischke, Markus Kretschmer, Dorothee Remmele, Christian W. Dittrich, Marcus Müller, Tobias Schuelein-Voelk, Christina Hertlein, Tobias Mueller, Martin J. Huettel, Bruno Reinhardt, Richard Ohlsen, Knut Rudel, Thomas Fraunholz, Martin J. PLoS Pathog Research Article Community-acquired (CA) Staphylococcus aureus cause various diseases even in healthy individuals. Enhanced virulence of CA-strains is partly attributed to increased production of toxins such as phenol-soluble modulins (PSM). The pathogen is internalized efficiently by mammalian host cells and intracellular S. aureus has recently been shown to contribute to disease. Upon internalization, cytotoxic S. aureus strains can disrupt phagosomal membranes and kill host cells in a PSM-dependent manner. However, PSM are not sufficient for these processes. Here we screened for factors required for intracellular S. aureus virulence. We infected escape reporter host cells with strains from an established transposon mutant library and detected phagosomal escape rates using automated microscopy. We thereby, among other factors, identified a non-ribosomal peptide synthetase (NRPS) to be required for efficient phagosomal escape and intracellular survival of S. aureus as well as induction of host cell death. By genetic complementation as well as supplementation with the synthetic NRPS product, the cyclic dipeptide phevalin, wild-type phenotypes were restored. We further demonstrate that the NRPS is contributing to virulence in a mouse pneumonia model. Together, our data illustrate a hitherto unrecognized function of the S. aureus NRPS and its dipeptide product during S. aureus infection. Public Library of Science 2016-09-15 /pmc/articles/PMC5025175/ /pubmed/27632173 http://dx.doi.org/10.1371/journal.ppat.1005857 Text en © 2016 Blättner 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
Blättner, Sebastian
Das, Sudip
Paprotka, Kerstin
Eilers, Ursula
Krischke, Markus
Kretschmer, Dorothee
Remmele, Christian W.
Dittrich, Marcus
Müller, Tobias
Schuelein-Voelk, Christina
Hertlein, Tobias
Mueller, Martin J.
Huettel, Bruno
Reinhardt, Richard
Ohlsen, Knut
Rudel, Thomas
Fraunholz, Martin J.
Staphylococcus aureus Exploits a Non-ribosomal Cyclic Dipeptide to Modulate Survival within Epithelial Cells and Phagocytes
title Staphylococcus aureus Exploits a Non-ribosomal Cyclic Dipeptide to Modulate Survival within Epithelial Cells and Phagocytes
title_full Staphylococcus aureus Exploits a Non-ribosomal Cyclic Dipeptide to Modulate Survival within Epithelial Cells and Phagocytes
title_fullStr Staphylococcus aureus Exploits a Non-ribosomal Cyclic Dipeptide to Modulate Survival within Epithelial Cells and Phagocytes
title_full_unstemmed Staphylococcus aureus Exploits a Non-ribosomal Cyclic Dipeptide to Modulate Survival within Epithelial Cells and Phagocytes
title_short Staphylococcus aureus Exploits a Non-ribosomal Cyclic Dipeptide to Modulate Survival within Epithelial Cells and Phagocytes
title_sort staphylococcus aureus exploits a non-ribosomal cyclic dipeptide to modulate survival within epithelial cells and phagocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5025175/
https://www.ncbi.nlm.nih.gov/pubmed/27632173
http://dx.doi.org/10.1371/journal.ppat.1005857
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