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FoxO1 regulates allergic asthmatic inflammation through regulating polarization of the macrophage inflammatory phenotype

Inflammatory monocyte and tissue macrophages influence the initiation, progression, and resolution of type 2 immune responses, and alveolar macrophages are the most prevalent immune-effector cells in the lung. While we were characterizing the M1- or M2-like macrophages in type 2 allergic inflammatio...

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Autores principales: Chung, Sangwoon, Lee, Tae Jin, Reader, Brenda F., Kim, Ji Young, Lee, Yong Gyu, Park, Gye Young, Karpurapu, Manjula, Ballinger, Megan N., Qian, Feng, Rusu, Luiza, Chung, Hae Young, Unterman, Terry G., Croce, Carlo M., Christman, John W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4951231/
https://www.ncbi.nlm.nih.gov/pubmed/27007158
http://dx.doi.org/10.18632/oncotarget.8162
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author Chung, Sangwoon
Lee, Tae Jin
Reader, Brenda F.
Kim, Ji Young
Lee, Yong Gyu
Park, Gye Young
Karpurapu, Manjula
Ballinger, Megan N.
Qian, Feng
Rusu, Luiza
Chung, Hae Young
Unterman, Terry G.
Croce, Carlo M.
Christman, John W.
author_facet Chung, Sangwoon
Lee, Tae Jin
Reader, Brenda F.
Kim, Ji Young
Lee, Yong Gyu
Park, Gye Young
Karpurapu, Manjula
Ballinger, Megan N.
Qian, Feng
Rusu, Luiza
Chung, Hae Young
Unterman, Terry G.
Croce, Carlo M.
Christman, John W.
author_sort Chung, Sangwoon
collection PubMed
description Inflammatory monocyte and tissue macrophages influence the initiation, progression, and resolution of type 2 immune responses, and alveolar macrophages are the most prevalent immune-effector cells in the lung. While we were characterizing the M1- or M2-like macrophages in type 2 allergic inflammation, we discovered that FoxO1 is highly expressed in alternatively activated macrophages. Although several studies have been focused on the fundamental role of FoxOs in hematopoietic and immune cells, the exact role that FoxO1 plays in allergic asthmatic inflammation in activated macrophages has not been investigated. Growing evidences indicate that FoxO1 acts as an upstream regulator of IRF4 and could have a role in a specific inflammatory phenotype of macrophages. Therefore, we hypothesized that IRF4 expression regulated by FoxO1 in alveolar macrophages is required for established type 2 immune mediates allergic lung inflammation. Our data indicate that targeted deletion of FoxO1 using FoxO1-selective inhibitor AS1842856 and genetic ablation of FoxO1 in macrophages significantly decreases IRF4 and various M2 macrophage-associated genes, suggesting a mechanism that involves FoxO1-IRF4 signaling in alveolar macrophages that works to polarize macrophages toward established type 2 immune responses. In response to the challenge of DRA (dust mite, ragweed, and Aspergillus) allergens, macrophage specific FoxO1 overexpression is associated with an accentuation of asthmatic lung inflammation, whereas pharmacologic inhibition of FoxO1 by AS1842856 attenuates the development of asthmatic lung inflammation. Thus, our study identifies a role for FoxO1-IRF4 signaling in the development of alternatively activated alveolar macrophages that contribute to type 2 allergic airway inflammation.
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spelling pubmed-49512312016-07-21 FoxO1 regulates allergic asthmatic inflammation through regulating polarization of the macrophage inflammatory phenotype Chung, Sangwoon Lee, Tae Jin Reader, Brenda F. Kim, Ji Young Lee, Yong Gyu Park, Gye Young Karpurapu, Manjula Ballinger, Megan N. Qian, Feng Rusu, Luiza Chung, Hae Young Unterman, Terry G. Croce, Carlo M. Christman, John W. Oncotarget Research Paper: Immunology Inflammatory monocyte and tissue macrophages influence the initiation, progression, and resolution of type 2 immune responses, and alveolar macrophages are the most prevalent immune-effector cells in the lung. While we were characterizing the M1- or M2-like macrophages in type 2 allergic inflammation, we discovered that FoxO1 is highly expressed in alternatively activated macrophages. Although several studies have been focused on the fundamental role of FoxOs in hematopoietic and immune cells, the exact role that FoxO1 plays in allergic asthmatic inflammation in activated macrophages has not been investigated. Growing evidences indicate that FoxO1 acts as an upstream regulator of IRF4 and could have a role in a specific inflammatory phenotype of macrophages. Therefore, we hypothesized that IRF4 expression regulated by FoxO1 in alveolar macrophages is required for established type 2 immune mediates allergic lung inflammation. Our data indicate that targeted deletion of FoxO1 using FoxO1-selective inhibitor AS1842856 and genetic ablation of FoxO1 in macrophages significantly decreases IRF4 and various M2 macrophage-associated genes, suggesting a mechanism that involves FoxO1-IRF4 signaling in alveolar macrophages that works to polarize macrophages toward established type 2 immune responses. In response to the challenge of DRA (dust mite, ragweed, and Aspergillus) allergens, macrophage specific FoxO1 overexpression is associated with an accentuation of asthmatic lung inflammation, whereas pharmacologic inhibition of FoxO1 by AS1842856 attenuates the development of asthmatic lung inflammation. Thus, our study identifies a role for FoxO1-IRF4 signaling in the development of alternatively activated alveolar macrophages that contribute to type 2 allergic airway inflammation. Impact Journals LLC 2016-03-17 /pmc/articles/PMC4951231/ /pubmed/27007158 http://dx.doi.org/10.18632/oncotarget.8162 Text en Copyright: © 2016 Chung et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper: Immunology
Chung, Sangwoon
Lee, Tae Jin
Reader, Brenda F.
Kim, Ji Young
Lee, Yong Gyu
Park, Gye Young
Karpurapu, Manjula
Ballinger, Megan N.
Qian, Feng
Rusu, Luiza
Chung, Hae Young
Unterman, Terry G.
Croce, Carlo M.
Christman, John W.
FoxO1 regulates allergic asthmatic inflammation through regulating polarization of the macrophage inflammatory phenotype
title FoxO1 regulates allergic asthmatic inflammation through regulating polarization of the macrophage inflammatory phenotype
title_full FoxO1 regulates allergic asthmatic inflammation through regulating polarization of the macrophage inflammatory phenotype
title_fullStr FoxO1 regulates allergic asthmatic inflammation through regulating polarization of the macrophage inflammatory phenotype
title_full_unstemmed FoxO1 regulates allergic asthmatic inflammation through regulating polarization of the macrophage inflammatory phenotype
title_short FoxO1 regulates allergic asthmatic inflammation through regulating polarization of the macrophage inflammatory phenotype
title_sort foxo1 regulates allergic asthmatic inflammation through regulating polarization of the macrophage inflammatory phenotype
topic Research Paper: Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4951231/
https://www.ncbi.nlm.nih.gov/pubmed/27007158
http://dx.doi.org/10.18632/oncotarget.8162
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