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A Francisella Mutant in Lipid A Carbohydrate Modification Elicits Protective Immunity

Francisella tularensis (Ft) is a highly infectious Gram-negative bacterium and the causative agent of the human disease tularemia. Ft is designated a class A select agent by the Centers for Disease Control and Prevention. Human clinical isolates of Ft produce lipid A of similar structure to Ft subsp...

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Autores principales: Kanistanon, Duangjit, Hajjar, Adeline M, Pelletier, Mark R, Gallagher, Larry A, Kalhorn, Thomas, Shaffer, Scott A, Goodlett, David R, Rohmer, Laurence, Brittnacher, Mitchell J, Skerrett, Shawn J, Ernst, Robert K
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2233673/
https://www.ncbi.nlm.nih.gov/pubmed/18266468
http://dx.doi.org/10.1371/journal.ppat.0040024
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author Kanistanon, Duangjit
Hajjar, Adeline M
Pelletier, Mark R
Gallagher, Larry A
Kalhorn, Thomas
Shaffer, Scott A
Goodlett, David R
Rohmer, Laurence
Brittnacher, Mitchell J
Skerrett, Shawn J
Ernst, Robert K
author_facet Kanistanon, Duangjit
Hajjar, Adeline M
Pelletier, Mark R
Gallagher, Larry A
Kalhorn, Thomas
Shaffer, Scott A
Goodlett, David R
Rohmer, Laurence
Brittnacher, Mitchell J
Skerrett, Shawn J
Ernst, Robert K
author_sort Kanistanon, Duangjit
collection PubMed
description Francisella tularensis (Ft) is a highly infectious Gram-negative bacterium and the causative agent of the human disease tularemia. Ft is designated a class A select agent by the Centers for Disease Control and Prevention. Human clinical isolates of Ft produce lipid A of similar structure to Ft subspecies novicida (Fn), a pathogen of mice. We identified three enzymes required for Fn lipid A carbohydrate modifications, specifically the presence of mannose (flmF1), galactosamine (flmF2), or both carbohydrates (flmK). Mutants lacking either galactosamine (flmF2) or galactosamine/mannose (flmK) addition to their lipid A were attenuated in mice by both pulmonary and subcutaneous routes of infection. In addition, aerosolization of the mutants (flmF2 and flmK) provided protection against challenge with wild-type (WT) Fn, whereas subcutaneous administration of only the flmK mutant provided protection from challenge with WT Fn. Furthermore, infection of an alveolar macrophage cell line by the flmK mutant induced higher levels of tumor necrosis factor-α (TNF-α) and macrophage inhibitory protein-2 (MIP-2) when compared to infection with WT Fn. Bone marrow–derived macrophages (BMMø) from Toll-like receptor 4 (TLR4) and TLR2/4 knockout mice infected with the flmK mutant also produced significantly higher amounts of interleukin-6 (IL-6) and MIP-2 than BMMø infected with WT Fn. However, production of IL-6 and MIP-2 was undetectable in BMMø from MyD88(−/−) mice infected with either strain. MyD88(−/−) mice were also susceptible to flmK mutant infection. We hypothesize that the ability of the flmK mutant to activate pro-inflammatory cytokine/chemokine production and innate immune responses mediated by the MyD88 signaling pathway may be responsible for its attenuation, leading to the induction of protective immunity by this mutant.
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spelling pubmed-22336732008-02-08 A Francisella Mutant in Lipid A Carbohydrate Modification Elicits Protective Immunity Kanistanon, Duangjit Hajjar, Adeline M Pelletier, Mark R Gallagher, Larry A Kalhorn, Thomas Shaffer, Scott A Goodlett, David R Rohmer, Laurence Brittnacher, Mitchell J Skerrett, Shawn J Ernst, Robert K PLoS Pathog Research Article Francisella tularensis (Ft) is a highly infectious Gram-negative bacterium and the causative agent of the human disease tularemia. Ft is designated a class A select agent by the Centers for Disease Control and Prevention. Human clinical isolates of Ft produce lipid A of similar structure to Ft subspecies novicida (Fn), a pathogen of mice. We identified three enzymes required for Fn lipid A carbohydrate modifications, specifically the presence of mannose (flmF1), galactosamine (flmF2), or both carbohydrates (flmK). Mutants lacking either galactosamine (flmF2) or galactosamine/mannose (flmK) addition to their lipid A were attenuated in mice by both pulmonary and subcutaneous routes of infection. In addition, aerosolization of the mutants (flmF2 and flmK) provided protection against challenge with wild-type (WT) Fn, whereas subcutaneous administration of only the flmK mutant provided protection from challenge with WT Fn. Furthermore, infection of an alveolar macrophage cell line by the flmK mutant induced higher levels of tumor necrosis factor-α (TNF-α) and macrophage inhibitory protein-2 (MIP-2) when compared to infection with WT Fn. Bone marrow–derived macrophages (BMMø) from Toll-like receptor 4 (TLR4) and TLR2/4 knockout mice infected with the flmK mutant also produced significantly higher amounts of interleukin-6 (IL-6) and MIP-2 than BMMø infected with WT Fn. However, production of IL-6 and MIP-2 was undetectable in BMMø from MyD88(−/−) mice infected with either strain. MyD88(−/−) mice were also susceptible to flmK mutant infection. We hypothesize that the ability of the flmK mutant to activate pro-inflammatory cytokine/chemokine production and innate immune responses mediated by the MyD88 signaling pathway may be responsible for its attenuation, leading to the induction of protective immunity by this mutant. Public Library of Science 2008-02 2008-02-08 /pmc/articles/PMC2233673/ /pubmed/18266468 http://dx.doi.org/10.1371/journal.ppat.0040024 Text en © 2008 Kanistanon 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
Kanistanon, Duangjit
Hajjar, Adeline M
Pelletier, Mark R
Gallagher, Larry A
Kalhorn, Thomas
Shaffer, Scott A
Goodlett, David R
Rohmer, Laurence
Brittnacher, Mitchell J
Skerrett, Shawn J
Ernst, Robert K
A Francisella Mutant in Lipid A Carbohydrate Modification Elicits Protective Immunity
title A Francisella Mutant in Lipid A Carbohydrate Modification Elicits Protective Immunity
title_full A Francisella Mutant in Lipid A Carbohydrate Modification Elicits Protective Immunity
title_fullStr A Francisella Mutant in Lipid A Carbohydrate Modification Elicits Protective Immunity
title_full_unstemmed A Francisella Mutant in Lipid A Carbohydrate Modification Elicits Protective Immunity
title_short A Francisella Mutant in Lipid A Carbohydrate Modification Elicits Protective Immunity
title_sort francisella mutant in lipid a carbohydrate modification elicits protective immunity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2233673/
https://www.ncbi.nlm.nih.gov/pubmed/18266468
http://dx.doi.org/10.1371/journal.ppat.0040024
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