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IFN-γ extends the immune functions of Guanylate Binding Proteins to inflammasome-independent antibacterial activities during Francisella novicida infection

Guanylate binding proteins (GBPs) are interferon-inducible proteins involved in the cell-intrinsic immunity against numerous intracellular pathogens. The molecular mechanisms underlying the potent antibacterial activity of GBPs are still unclear. GBPs have been functionally linked to the NLRP3, the...

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Autores principales: Wallet, Pierre, Benaoudia, Sacha, Mosnier, Amandine, Lagrange, Brice, Martin, Amandine, Lindgren, Helena, Golovliov, Igor, Michal, Fanny, Basso, Pauline, Djebali, Sophia, Provost, Angelina, Allatif, Omran, Meunier, Etienne, Broz, Petr, Yamamoto, Masahiro, Py, Bénédicte F., Faudry, Eric, Sjöstedt, Anders, Henry, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5624647/
https://www.ncbi.nlm.nih.gov/pubmed/28968459
http://dx.doi.org/10.1371/journal.ppat.1006630
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author Wallet, Pierre
Benaoudia, Sacha
Mosnier, Amandine
Lagrange, Brice
Martin, Amandine
Lindgren, Helena
Golovliov, Igor
Michal, Fanny
Basso, Pauline
Djebali, Sophia
Provost, Angelina
Allatif, Omran
Meunier, Etienne
Broz, Petr
Yamamoto, Masahiro
Py, Bénédicte F.
Faudry, Eric
Sjöstedt, Anders
Henry, Thomas
author_facet Wallet, Pierre
Benaoudia, Sacha
Mosnier, Amandine
Lagrange, Brice
Martin, Amandine
Lindgren, Helena
Golovliov, Igor
Michal, Fanny
Basso, Pauline
Djebali, Sophia
Provost, Angelina
Allatif, Omran
Meunier, Etienne
Broz, Petr
Yamamoto, Masahiro
Py, Bénédicte F.
Faudry, Eric
Sjöstedt, Anders
Henry, Thomas
author_sort Wallet, Pierre
collection PubMed
description Guanylate binding proteins (GBPs) are interferon-inducible proteins involved in the cell-intrinsic immunity against numerous intracellular pathogens. The molecular mechanisms underlying the potent antibacterial activity of GBPs are still unclear. GBPs have been functionally linked to the NLRP3, the AIM2 and the caspase-11 inflammasomes. Two opposing models are currently proposed to explain the GBPs-inflammasome link: i) GBPs would target intracellular bacteria or bacteria-containing vacuoles to increase cytosolic PAMPs release ii) GBPs would directly facilitate inflammasome complex assembly. Using Francisella novicida infection, we investigated the functional interactions between GBPs and the inflammasome. GBPs, induced in a type I IFN-dependent manner, are required for the F. novicida-mediated AIM2-inflammasome pathway. Here, we demonstrate that GBPs action is not restricted to the AIM2 inflammasome, but controls in a hierarchical manner the activation of different inflammasomes complexes and apoptotic caspases. IFN-γ induces a quantitative switch in GBPs levels and redirects pyroptotic and apoptotic pathways under the control of GBPs. Furthermore, upon IFN-γ priming, F. novicida-infected macrophages restrict cytosolic bacterial replication in a GBP-dependent and inflammasome-independent manner. Finally, in a mouse model of tularemia, we demonstrate that the inflammasome and the GBPs are two key immune pathways functioning largely independently to control F. novicida infection. Altogether, our results indicate that GBPs are the master effectors of IFN-γ-mediated responses against F. novicida to control antibacterial immune responses in inflammasome-dependent and independent manners.
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spelling pubmed-56246472017-10-17 IFN-γ extends the immune functions of Guanylate Binding Proteins to inflammasome-independent antibacterial activities during Francisella novicida infection Wallet, Pierre Benaoudia, Sacha Mosnier, Amandine Lagrange, Brice Martin, Amandine Lindgren, Helena Golovliov, Igor Michal, Fanny Basso, Pauline Djebali, Sophia Provost, Angelina Allatif, Omran Meunier, Etienne Broz, Petr Yamamoto, Masahiro Py, Bénédicte F. Faudry, Eric Sjöstedt, Anders Henry, Thomas PLoS Pathog Research Article Guanylate binding proteins (GBPs) are interferon-inducible proteins involved in the cell-intrinsic immunity against numerous intracellular pathogens. The molecular mechanisms underlying the potent antibacterial activity of GBPs are still unclear. GBPs have been functionally linked to the NLRP3, the AIM2 and the caspase-11 inflammasomes. Two opposing models are currently proposed to explain the GBPs-inflammasome link: i) GBPs would target intracellular bacteria or bacteria-containing vacuoles to increase cytosolic PAMPs release ii) GBPs would directly facilitate inflammasome complex assembly. Using Francisella novicida infection, we investigated the functional interactions between GBPs and the inflammasome. GBPs, induced in a type I IFN-dependent manner, are required for the F. novicida-mediated AIM2-inflammasome pathway. Here, we demonstrate that GBPs action is not restricted to the AIM2 inflammasome, but controls in a hierarchical manner the activation of different inflammasomes complexes and apoptotic caspases. IFN-γ induces a quantitative switch in GBPs levels and redirects pyroptotic and apoptotic pathways under the control of GBPs. Furthermore, upon IFN-γ priming, F. novicida-infected macrophages restrict cytosolic bacterial replication in a GBP-dependent and inflammasome-independent manner. Finally, in a mouse model of tularemia, we demonstrate that the inflammasome and the GBPs are two key immune pathways functioning largely independently to control F. novicida infection. Altogether, our results indicate that GBPs are the master effectors of IFN-γ-mediated responses against F. novicida to control antibacterial immune responses in inflammasome-dependent and independent manners. Public Library of Science 2017-10-02 /pmc/articles/PMC5624647/ /pubmed/28968459 http://dx.doi.org/10.1371/journal.ppat.1006630 Text en © 2017 Wallet 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
Wallet, Pierre
Benaoudia, Sacha
Mosnier, Amandine
Lagrange, Brice
Martin, Amandine
Lindgren, Helena
Golovliov, Igor
Michal, Fanny
Basso, Pauline
Djebali, Sophia
Provost, Angelina
Allatif, Omran
Meunier, Etienne
Broz, Petr
Yamamoto, Masahiro
Py, Bénédicte F.
Faudry, Eric
Sjöstedt, Anders
Henry, Thomas
IFN-γ extends the immune functions of Guanylate Binding Proteins to inflammasome-independent antibacterial activities during Francisella novicida infection
title IFN-γ extends the immune functions of Guanylate Binding Proteins to inflammasome-independent antibacterial activities during Francisella novicida infection
title_full IFN-γ extends the immune functions of Guanylate Binding Proteins to inflammasome-independent antibacterial activities during Francisella novicida infection
title_fullStr IFN-γ extends the immune functions of Guanylate Binding Proteins to inflammasome-independent antibacterial activities during Francisella novicida infection
title_full_unstemmed IFN-γ extends the immune functions of Guanylate Binding Proteins to inflammasome-independent antibacterial activities during Francisella novicida infection
title_short IFN-γ extends the immune functions of Guanylate Binding Proteins to inflammasome-independent antibacterial activities during Francisella novicida infection
title_sort ifn-γ extends the immune functions of guanylate binding proteins to inflammasome-independent antibacterial activities during francisella novicida infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5624647/
https://www.ncbi.nlm.nih.gov/pubmed/28968459
http://dx.doi.org/10.1371/journal.ppat.1006630
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