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The Lipopolysaccharide Core of Brucella abortus Acts as a Shield Against Innate Immunity Recognition

Innate immunity recognizes bacterial molecules bearing pathogen-associated molecular patterns to launch inflammatory responses leading to the activation of adaptive immunity. However, the lipopolysaccharide (LPS) of the gram-negative bacterium Brucella lacks a marked pathogen-associated molecular pa...

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Autores principales: Conde-Álvarez, Raquel, Arce-Gorvel, Vilma, Iriarte, Maite, Manček-Keber, Mateja, Barquero-Calvo, Elías, Palacios-Chaves, Leyre, Chacón-Díaz, Carlos, Chaves-Olarte, Esteban, Martirosyan, Anna, von Bargen, Kristine, Grilló, María-Jesús, Jerala, Roman, Brandenburg, Klaus, Llobet, Enrique, Bengoechea, José A., Moreno, Edgardo, Moriyón, Ignacio, Gorvel, Jean-Pierre
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3349745/
https://www.ncbi.nlm.nih.gov/pubmed/22589715
http://dx.doi.org/10.1371/journal.ppat.1002675
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author Conde-Álvarez, Raquel
Arce-Gorvel, Vilma
Iriarte, Maite
Manček-Keber, Mateja
Barquero-Calvo, Elías
Palacios-Chaves, Leyre
Chacón-Díaz, Carlos
Chaves-Olarte, Esteban
Martirosyan, Anna
von Bargen, Kristine
Grilló, María-Jesús
Jerala, Roman
Brandenburg, Klaus
Llobet, Enrique
Bengoechea, José A.
Moreno, Edgardo
Moriyón, Ignacio
Gorvel, Jean-Pierre
author_facet Conde-Álvarez, Raquel
Arce-Gorvel, Vilma
Iriarte, Maite
Manček-Keber, Mateja
Barquero-Calvo, Elías
Palacios-Chaves, Leyre
Chacón-Díaz, Carlos
Chaves-Olarte, Esteban
Martirosyan, Anna
von Bargen, Kristine
Grilló, María-Jesús
Jerala, Roman
Brandenburg, Klaus
Llobet, Enrique
Bengoechea, José A.
Moreno, Edgardo
Moriyón, Ignacio
Gorvel, Jean-Pierre
author_sort Conde-Álvarez, Raquel
collection PubMed
description Innate immunity recognizes bacterial molecules bearing pathogen-associated molecular patterns to launch inflammatory responses leading to the activation of adaptive immunity. However, the lipopolysaccharide (LPS) of the gram-negative bacterium Brucella lacks a marked pathogen-associated molecular pattern, and it has been postulated that this delays the development of immunity, creating a gap that is critical for the bacterium to reach the intracellular replicative niche. We found that a B. abortus mutant in the wadC gene displayed a disrupted LPS core while keeping both the LPS O-polysaccharide and lipid A. In mice, the wadC mutant induced proinflammatory responses and was attenuated. In addition, it was sensitive to killing by non-immune serum and bactericidal peptides and did not multiply in dendritic cells being targeted to lysosomal compartments. In contrast to wild type B. abortus, the wadC mutant induced dendritic cell maturation and secretion of pro-inflammatory cytokines. All these properties were reproduced by the wadC mutant purified LPS in a TLR4-dependent manner. Moreover, the core-mutated LPS displayed an increased binding to MD-2, the TLR4 co-receptor leading to subsequent increase in intracellular signaling. Here we show that Brucella escapes recognition in early stages of infection by expressing a shield against recognition by innate immunity in its LPS core and identify a novel virulence mechanism in intracellular pathogenic gram-negative bacteria. These results also encourage for an improvement in the generation of novel bacterial vaccines.
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spelling pubmed-33497452012-05-15 The Lipopolysaccharide Core of Brucella abortus Acts as a Shield Against Innate Immunity Recognition Conde-Álvarez, Raquel Arce-Gorvel, Vilma Iriarte, Maite Manček-Keber, Mateja Barquero-Calvo, Elías Palacios-Chaves, Leyre Chacón-Díaz, Carlos Chaves-Olarte, Esteban Martirosyan, Anna von Bargen, Kristine Grilló, María-Jesús Jerala, Roman Brandenburg, Klaus Llobet, Enrique Bengoechea, José A. Moreno, Edgardo Moriyón, Ignacio Gorvel, Jean-Pierre PLoS Pathog Research Article Innate immunity recognizes bacterial molecules bearing pathogen-associated molecular patterns to launch inflammatory responses leading to the activation of adaptive immunity. However, the lipopolysaccharide (LPS) of the gram-negative bacterium Brucella lacks a marked pathogen-associated molecular pattern, and it has been postulated that this delays the development of immunity, creating a gap that is critical for the bacterium to reach the intracellular replicative niche. We found that a B. abortus mutant in the wadC gene displayed a disrupted LPS core while keeping both the LPS O-polysaccharide and lipid A. In mice, the wadC mutant induced proinflammatory responses and was attenuated. In addition, it was sensitive to killing by non-immune serum and bactericidal peptides and did not multiply in dendritic cells being targeted to lysosomal compartments. In contrast to wild type B. abortus, the wadC mutant induced dendritic cell maturation and secretion of pro-inflammatory cytokines. All these properties were reproduced by the wadC mutant purified LPS in a TLR4-dependent manner. Moreover, the core-mutated LPS displayed an increased binding to MD-2, the TLR4 co-receptor leading to subsequent increase in intracellular signaling. Here we show that Brucella escapes recognition in early stages of infection by expressing a shield against recognition by innate immunity in its LPS core and identify a novel virulence mechanism in intracellular pathogenic gram-negative bacteria. These results also encourage for an improvement in the generation of novel bacterial vaccines. Public Library of Science 2012-05-10 /pmc/articles/PMC3349745/ /pubmed/22589715 http://dx.doi.org/10.1371/journal.ppat.1002675 Text en Conde-Álvarez 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
Conde-Álvarez, Raquel
Arce-Gorvel, Vilma
Iriarte, Maite
Manček-Keber, Mateja
Barquero-Calvo, Elías
Palacios-Chaves, Leyre
Chacón-Díaz, Carlos
Chaves-Olarte, Esteban
Martirosyan, Anna
von Bargen, Kristine
Grilló, María-Jesús
Jerala, Roman
Brandenburg, Klaus
Llobet, Enrique
Bengoechea, José A.
Moreno, Edgardo
Moriyón, Ignacio
Gorvel, Jean-Pierre
The Lipopolysaccharide Core of Brucella abortus Acts as a Shield Against Innate Immunity Recognition
title The Lipopolysaccharide Core of Brucella abortus Acts as a Shield Against Innate Immunity Recognition
title_full The Lipopolysaccharide Core of Brucella abortus Acts as a Shield Against Innate Immunity Recognition
title_fullStr The Lipopolysaccharide Core of Brucella abortus Acts as a Shield Against Innate Immunity Recognition
title_full_unstemmed The Lipopolysaccharide Core of Brucella abortus Acts as a Shield Against Innate Immunity Recognition
title_short The Lipopolysaccharide Core of Brucella abortus Acts as a Shield Against Innate Immunity Recognition
title_sort lipopolysaccharide core of brucella abortus acts as a shield against innate immunity recognition
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3349745/
https://www.ncbi.nlm.nih.gov/pubmed/22589715
http://dx.doi.org/10.1371/journal.ppat.1002675
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