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MDA5 signaling induces type 1 IFN- and IL-1-dependent lung vascular permeability which protects mice from opportunistic fungal infection

Lungs balance threat from primary viral infection, secondary infection, and inflammatory damage. Severe pulmonary inflammation induces vascular permeability, edema, and organ dysfunction. We previously demonstrated that poly(I:C) (pICLC) induced type 1 interferon (t1IFN) protected mice from Cryptoco...

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Autores principales: Davis, Michael J., Martin, Rachel E., Pinheiro, Giovana M., Hoke, Elizabeth S., Moyer, Shannon, Mayer-Barber, Katrin D., Chang, Yun C., Kwon-Chung, Kyung J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9368195/
https://www.ncbi.nlm.nih.gov/pubmed/35967332
http://dx.doi.org/10.3389/fimmu.2022.931194
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author Davis, Michael J.
Martin, Rachel E.
Pinheiro, Giovana M.
Hoke, Elizabeth S.
Moyer, Shannon
Mayer-Barber, Katrin D.
Chang, Yun C.
Kwon-Chung, Kyung J.
author_facet Davis, Michael J.
Martin, Rachel E.
Pinheiro, Giovana M.
Hoke, Elizabeth S.
Moyer, Shannon
Mayer-Barber, Katrin D.
Chang, Yun C.
Kwon-Chung, Kyung J.
author_sort Davis, Michael J.
collection PubMed
description Lungs balance threat from primary viral infection, secondary infection, and inflammatory damage. Severe pulmonary inflammation induces vascular permeability, edema, and organ dysfunction. We previously demonstrated that poly(I:C) (pICLC) induced type 1 interferon (t1IFN) protected mice from Cryptococcus gattii (Cg) via local iron restriction. Here we show pICLC increased serum protein and intravenously injected FITC-dextran in the lung airspace suggesting pICLC induces vascular permeability. Interestingly, pICLC induced a pro-inflammatory signature with significant expression of IL-1 and IL-6 which depended on MDA5 and t1IFN. Vascular permeability depended on MDA5, t1IFN, IL-1, and IL-6. T1IFN also induced MDA5 and other MDA5 signaling components suggesting that positive feedback contributes to t1IFN dependent expression of the pro-inflammatory signature. Vascular permeability, induced by pICLC or another compound, inhibited Cg by limiting iron. These data suggest that pICLC induces t1IFN which potentiates pICLC-MDA5 signaling increasing IL-1 and IL-6 resulting in leakage of antimicrobial serum factors into lung airspace. Thus, induced vascular permeability may act as an innate defense mechanism against opportunistic fungal infection, such as cryptococcosis, and may be exploited as a host-directed therapeutic target.
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spelling pubmed-93681952022-08-12 MDA5 signaling induces type 1 IFN- and IL-1-dependent lung vascular permeability which protects mice from opportunistic fungal infection Davis, Michael J. Martin, Rachel E. Pinheiro, Giovana M. Hoke, Elizabeth S. Moyer, Shannon Mayer-Barber, Katrin D. Chang, Yun C. Kwon-Chung, Kyung J. Front Immunol Immunology Lungs balance threat from primary viral infection, secondary infection, and inflammatory damage. Severe pulmonary inflammation induces vascular permeability, edema, and organ dysfunction. We previously demonstrated that poly(I:C) (pICLC) induced type 1 interferon (t1IFN) protected mice from Cryptococcus gattii (Cg) via local iron restriction. Here we show pICLC increased serum protein and intravenously injected FITC-dextran in the lung airspace suggesting pICLC induces vascular permeability. Interestingly, pICLC induced a pro-inflammatory signature with significant expression of IL-1 and IL-6 which depended on MDA5 and t1IFN. Vascular permeability depended on MDA5, t1IFN, IL-1, and IL-6. T1IFN also induced MDA5 and other MDA5 signaling components suggesting that positive feedback contributes to t1IFN dependent expression of the pro-inflammatory signature. Vascular permeability, induced by pICLC or another compound, inhibited Cg by limiting iron. These data suggest that pICLC induces t1IFN which potentiates pICLC-MDA5 signaling increasing IL-1 and IL-6 resulting in leakage of antimicrobial serum factors into lung airspace. Thus, induced vascular permeability may act as an innate defense mechanism against opportunistic fungal infection, such as cryptococcosis, and may be exploited as a host-directed therapeutic target. Frontiers Media S.A. 2022-07-28 /pmc/articles/PMC9368195/ /pubmed/35967332 http://dx.doi.org/10.3389/fimmu.2022.931194 Text en Copyright © 2022 Davis, Martin, Pinheiro, Hoke, Moyer, Mayer-Barber, Chang and Kwon-Chung https://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) and the copyright owner(s) 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
Davis, Michael J.
Martin, Rachel E.
Pinheiro, Giovana M.
Hoke, Elizabeth S.
Moyer, Shannon
Mayer-Barber, Katrin D.
Chang, Yun C.
Kwon-Chung, Kyung J.
MDA5 signaling induces type 1 IFN- and IL-1-dependent lung vascular permeability which protects mice from opportunistic fungal infection
title MDA5 signaling induces type 1 IFN- and IL-1-dependent lung vascular permeability which protects mice from opportunistic fungal infection
title_full MDA5 signaling induces type 1 IFN- and IL-1-dependent lung vascular permeability which protects mice from opportunistic fungal infection
title_fullStr MDA5 signaling induces type 1 IFN- and IL-1-dependent lung vascular permeability which protects mice from opportunistic fungal infection
title_full_unstemmed MDA5 signaling induces type 1 IFN- and IL-1-dependent lung vascular permeability which protects mice from opportunistic fungal infection
title_short MDA5 signaling induces type 1 IFN- and IL-1-dependent lung vascular permeability which protects mice from opportunistic fungal infection
title_sort mda5 signaling induces type 1 ifn- and il-1-dependent lung vascular permeability which protects mice from opportunistic fungal infection
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9368195/
https://www.ncbi.nlm.nih.gov/pubmed/35967332
http://dx.doi.org/10.3389/fimmu.2022.931194
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