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A Listeria monocytogenes Bacteriocin Can Target the Commensal Prevotella copri and Modulate Intestinal Infection

Understanding the role of the microbiota components in either preventing or favoring enteric infections is critical. Here, we report the discovery of a Listeria bacteriocin, Lmo2776, which limits Listeria intestinal colonization. Oral infection of conventional mice with a Δlmo2776 mutant leads to a...

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Autores principales: Rolhion, Nathalie, Chassaing, Benoit, Nahori, Marie-Anne, de Bodt, Jana, Moura, Alexandra, Lecuit, Marc, Dussurget, Olivier, Bérard, Marion, Marzorati, Massimo, Fehlner-Peach, Hannah, Littman, Dan R., Gewirtz, Andrew T., Van de Wiele, Tom, Cossart, Pascale
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6854461/
https://www.ncbi.nlm.nih.gov/pubmed/31726031
http://dx.doi.org/10.1016/j.chom.2019.10.016
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author Rolhion, Nathalie
Chassaing, Benoit
Nahori, Marie-Anne
de Bodt, Jana
Moura, Alexandra
Lecuit, Marc
Dussurget, Olivier
Bérard, Marion
Marzorati, Massimo
Fehlner-Peach, Hannah
Littman, Dan R.
Gewirtz, Andrew T.
Van de Wiele, Tom
Cossart, Pascale
author_facet Rolhion, Nathalie
Chassaing, Benoit
Nahori, Marie-Anne
de Bodt, Jana
Moura, Alexandra
Lecuit, Marc
Dussurget, Olivier
Bérard, Marion
Marzorati, Massimo
Fehlner-Peach, Hannah
Littman, Dan R.
Gewirtz, Andrew T.
Van de Wiele, Tom
Cossart, Pascale
author_sort Rolhion, Nathalie
collection PubMed
description Understanding the role of the microbiota components in either preventing or favoring enteric infections is critical. Here, we report the discovery of a Listeria bacteriocin, Lmo2776, which limits Listeria intestinal colonization. Oral infection of conventional mice with a Δlmo2776 mutant leads to a thinner intestinal mucus layer and higher Listeria loads both in the intestinal content and deeper tissues compared to WT Listeria. This latter difference is microbiota dependent, as it is not observed in germ-free mice. Strikingly, it is phenocopied by pre-colonization of germ-free mice before Listeria infection with Prevotella copri, an abundant gut-commensal bacteria, but not with the other commensals tested. We further show that Lmo2776 targets P. copri and reduces its abundance. Together, these data unveil a role for P.copri in exacerbating intestinal infection, highlighting that pathogens such as Listeria may selectively deplete microbiota bacterial species to avoid excessive inflammation.
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spelling pubmed-68544612019-11-20 A Listeria monocytogenes Bacteriocin Can Target the Commensal Prevotella copri and Modulate Intestinal Infection Rolhion, Nathalie Chassaing, Benoit Nahori, Marie-Anne de Bodt, Jana Moura, Alexandra Lecuit, Marc Dussurget, Olivier Bérard, Marion Marzorati, Massimo Fehlner-Peach, Hannah Littman, Dan R. Gewirtz, Andrew T. Van de Wiele, Tom Cossart, Pascale Cell Host Microbe Article Understanding the role of the microbiota components in either preventing or favoring enteric infections is critical. Here, we report the discovery of a Listeria bacteriocin, Lmo2776, which limits Listeria intestinal colonization. Oral infection of conventional mice with a Δlmo2776 mutant leads to a thinner intestinal mucus layer and higher Listeria loads both in the intestinal content and deeper tissues compared to WT Listeria. This latter difference is microbiota dependent, as it is not observed in germ-free mice. Strikingly, it is phenocopied by pre-colonization of germ-free mice before Listeria infection with Prevotella copri, an abundant gut-commensal bacteria, but not with the other commensals tested. We further show that Lmo2776 targets P. copri and reduces its abundance. Together, these data unveil a role for P.copri in exacerbating intestinal infection, highlighting that pathogens such as Listeria may selectively deplete microbiota bacterial species to avoid excessive inflammation. Cell Press 2019-11-13 /pmc/articles/PMC6854461/ /pubmed/31726031 http://dx.doi.org/10.1016/j.chom.2019.10.016 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Rolhion, Nathalie
Chassaing, Benoit
Nahori, Marie-Anne
de Bodt, Jana
Moura, Alexandra
Lecuit, Marc
Dussurget, Olivier
Bérard, Marion
Marzorati, Massimo
Fehlner-Peach, Hannah
Littman, Dan R.
Gewirtz, Andrew T.
Van de Wiele, Tom
Cossart, Pascale
A Listeria monocytogenes Bacteriocin Can Target the Commensal Prevotella copri and Modulate Intestinal Infection
title A Listeria monocytogenes Bacteriocin Can Target the Commensal Prevotella copri and Modulate Intestinal Infection
title_full A Listeria monocytogenes Bacteriocin Can Target the Commensal Prevotella copri and Modulate Intestinal Infection
title_fullStr A Listeria monocytogenes Bacteriocin Can Target the Commensal Prevotella copri and Modulate Intestinal Infection
title_full_unstemmed A Listeria monocytogenes Bacteriocin Can Target the Commensal Prevotella copri and Modulate Intestinal Infection
title_short A Listeria monocytogenes Bacteriocin Can Target the Commensal Prevotella copri and Modulate Intestinal Infection
title_sort listeria monocytogenes bacteriocin can target the commensal prevotella copri and modulate intestinal infection
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6854461/
https://www.ncbi.nlm.nih.gov/pubmed/31726031
http://dx.doi.org/10.1016/j.chom.2019.10.016
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