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The IDO–AhR Axis Controls Th17/Treg Immunity in a Pulmonary Model of Fungal Infection

In infectious diseases, the enzyme indoleamine 2,3 dioxygenase-1 (IDO1) that catalyzes the tryptophan (Trp) degradation along the kynurenines (Kyn) pathway has two main functions, the control of pathogen growth by reducing available Trp and immune regulation mediated by the Kyn-mediated expansion of...

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Autores principales: de Araújo, Eliseu Frank, Feriotti, Claudia, Galdino, Nayane Alves de Lima, Preite, Nycolas Willian, Calich, Vera Lúcia Garcia, Loures, Flávio Vieira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5523665/
https://www.ncbi.nlm.nih.gov/pubmed/28791025
http://dx.doi.org/10.3389/fimmu.2017.00880
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author de Araújo, Eliseu Frank
Feriotti, Claudia
Galdino, Nayane Alves de Lima
Preite, Nycolas Willian
Calich, Vera Lúcia Garcia
Loures, Flávio Vieira
author_facet de Araújo, Eliseu Frank
Feriotti, Claudia
Galdino, Nayane Alves de Lima
Preite, Nycolas Willian
Calich, Vera Lúcia Garcia
Loures, Flávio Vieira
author_sort de Araújo, Eliseu Frank
collection PubMed
description In infectious diseases, the enzyme indoleamine 2,3 dioxygenase-1 (IDO1) that catalyzes the tryptophan (Trp) degradation along the kynurenines (Kyn) pathway has two main functions, the control of pathogen growth by reducing available Trp and immune regulation mediated by the Kyn-mediated expansion of regulatory T (Treg) cells via aryl hydrocarbon receptor (AhR). In pulmonary paracoccidioidomycosis (PCM) caused by the dimorphic fungus Paracoccidioides brasiliensis, IDO1 was shown to control the disease severity of both resistant and susceptible mice to the infection; however, only in resistant mice, IDO1 is induced by TGF-β signaling that confers a stable tolerogenic phenotype to dendritic cells (DCs). In addition, in pulmonary PCM, the tolerogenic function of plasmacytoid dendritic cells was linked to the IDO1 activity. To further evaluate the function of IDO1 in pulmonary PCM, IDO1-deficient (IDO1(−/−)) C57BL/6 mice were intratracheally infected with P. brasiliensis yeasts and the infection analyzed at three postinfection periods regarding several parameters of disease severity and immune response. The fungal loads and tissue pathology of IDO1(−/−) mice were higher than their wild-type controls resulting in increased mortality rates. The evaluation of innate lymphoid cells showed an upregulated differentiation of the innate lymphoid cell 3 phenotype accompanied by a decreased expansion of ILC1 and NK cells in the lungs of infected IDO1(−/−) mice. DCs from these mice expressed elevated levels of costimulatory molecules and cytokine IL-6 associated with reduced production of IL-12, TNF-α, IL-1β, TGF-β, and IL-10. This response was concomitant with a marked reduction in AhR production. The absence of IDO1 expression caused an increased influx of activated Th17 cells to the lungs with a simultaneous reduction in Th1 and Treg cells. Accordingly, the suppressive cytokines IL-10, TGF-β, IL-27, and IL-35 appeared in reduced levels in the lungs of IDO1(−/−) mice. In conclusion, the immunological balance mediated by the axis IDO/AhR is fundamental to determine the balance between Th17/Treg cells and control the severity of pulmonary PCM.
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spelling pubmed-55236652017-08-08 The IDO–AhR Axis Controls Th17/Treg Immunity in a Pulmonary Model of Fungal Infection de Araújo, Eliseu Frank Feriotti, Claudia Galdino, Nayane Alves de Lima Preite, Nycolas Willian Calich, Vera Lúcia Garcia Loures, Flávio Vieira Front Immunol Immunology In infectious diseases, the enzyme indoleamine 2,3 dioxygenase-1 (IDO1) that catalyzes the tryptophan (Trp) degradation along the kynurenines (Kyn) pathway has two main functions, the control of pathogen growth by reducing available Trp and immune regulation mediated by the Kyn-mediated expansion of regulatory T (Treg) cells via aryl hydrocarbon receptor (AhR). In pulmonary paracoccidioidomycosis (PCM) caused by the dimorphic fungus Paracoccidioides brasiliensis, IDO1 was shown to control the disease severity of both resistant and susceptible mice to the infection; however, only in resistant mice, IDO1 is induced by TGF-β signaling that confers a stable tolerogenic phenotype to dendritic cells (DCs). In addition, in pulmonary PCM, the tolerogenic function of plasmacytoid dendritic cells was linked to the IDO1 activity. To further evaluate the function of IDO1 in pulmonary PCM, IDO1-deficient (IDO1(−/−)) C57BL/6 mice were intratracheally infected with P. brasiliensis yeasts and the infection analyzed at three postinfection periods regarding several parameters of disease severity and immune response. The fungal loads and tissue pathology of IDO1(−/−) mice were higher than their wild-type controls resulting in increased mortality rates. The evaluation of innate lymphoid cells showed an upregulated differentiation of the innate lymphoid cell 3 phenotype accompanied by a decreased expansion of ILC1 and NK cells in the lungs of infected IDO1(−/−) mice. DCs from these mice expressed elevated levels of costimulatory molecules and cytokine IL-6 associated with reduced production of IL-12, TNF-α, IL-1β, TGF-β, and IL-10. This response was concomitant with a marked reduction in AhR production. The absence of IDO1 expression caused an increased influx of activated Th17 cells to the lungs with a simultaneous reduction in Th1 and Treg cells. Accordingly, the suppressive cytokines IL-10, TGF-β, IL-27, and IL-35 appeared in reduced levels in the lungs of IDO1(−/−) mice. In conclusion, the immunological balance mediated by the axis IDO/AhR is fundamental to determine the balance between Th17/Treg cells and control the severity of pulmonary PCM. Frontiers Media S.A. 2017-07-24 /pmc/articles/PMC5523665/ /pubmed/28791025 http://dx.doi.org/10.3389/fimmu.2017.00880 Text en Copyright © 2017 de Araújo, Feriotti, Galdino, Preite, Calich and Loures. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
de Araújo, Eliseu Frank
Feriotti, Claudia
Galdino, Nayane Alves de Lima
Preite, Nycolas Willian
Calich, Vera Lúcia Garcia
Loures, Flávio Vieira
The IDO–AhR Axis Controls Th17/Treg Immunity in a Pulmonary Model of Fungal Infection
title The IDO–AhR Axis Controls Th17/Treg Immunity in a Pulmonary Model of Fungal Infection
title_full The IDO–AhR Axis Controls Th17/Treg Immunity in a Pulmonary Model of Fungal Infection
title_fullStr The IDO–AhR Axis Controls Th17/Treg Immunity in a Pulmonary Model of Fungal Infection
title_full_unstemmed The IDO–AhR Axis Controls Th17/Treg Immunity in a Pulmonary Model of Fungal Infection
title_short The IDO–AhR Axis Controls Th17/Treg Immunity in a Pulmonary Model of Fungal Infection
title_sort ido–ahr axis controls th17/treg immunity in a pulmonary model of fungal infection
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5523665/
https://www.ncbi.nlm.nih.gov/pubmed/28791025
http://dx.doi.org/10.3389/fimmu.2017.00880
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