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A FOXO3/IRF7 gene regulatory circuit limits inflammatory sequelae of antiviral responses

Antiviral responses must be tightly regulated to rapidly defend against infection while minimizing inflammatory damage. Type 1 interferons (IFN-I) are crucial mediators of antiviral responses(1) and their transcription is regulated by a variety of transcription factors(2); principal amongst these is...

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Autores principales: Litvak, Vladimir, Ratushny, Alexander V., Lampano, Aaron E., Schmitz, Frank, Huang, Albert C., Raman, Ayush, Rust, Alistair G., Bergthaler, Andreas, Aitchison, John D., Aderem, Alan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3556990/
https://www.ncbi.nlm.nih.gov/pubmed/22982991
http://dx.doi.org/10.1038/nature11428
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author Litvak, Vladimir
Ratushny, Alexander V.
Lampano, Aaron E.
Schmitz, Frank
Huang, Albert C.
Raman, Ayush
Rust, Alistair G.
Bergthaler, Andreas
Aitchison, John D.
Aderem, Alan
author_facet Litvak, Vladimir
Ratushny, Alexander V.
Lampano, Aaron E.
Schmitz, Frank
Huang, Albert C.
Raman, Ayush
Rust, Alistair G.
Bergthaler, Andreas
Aitchison, John D.
Aderem, Alan
author_sort Litvak, Vladimir
collection PubMed
description Antiviral responses must be tightly regulated to rapidly defend against infection while minimizing inflammatory damage. Type 1 interferons (IFN-I) are crucial mediators of antiviral responses(1) and their transcription is regulated by a variety of transcription factors(2); principal amongst these is the family of interferon regulatory factors (IRFs)(3). The IRF gene regulatory networks are complex and contain multiple feedback loops. The tools of systems biology are well suited to elucidate the complex interactions that give rise to precise coordination of the interferon response. Here we have used an unbiased systems approach to predict that a member of the forkhead family of transcription factors, FOXO3, is a negative regulator of a subset of antiviral genes. This prediction was validated using macrophages isolated from Foxo3-null mice. Genome-wide location analysis combined with gene deletion studies identified the Irf7 gene as a critical target of FOXO3. FOXO3 was identified as a negative regulator of Irf7 transcription and we have further demonstrated that FOXO3, IRF7 and IFN-I form a coherent feed-forward regulatory circuit. Our data suggest that the FOXO3-IRF7 regulatory circuit represents a novel mechanism for establishing the requisite set points in the interferon pathway that balances the beneficial effects and deleterious sequelae of the antiviral response.
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spelling pubmed-35569902013-04-18 A FOXO3/IRF7 gene regulatory circuit limits inflammatory sequelae of antiviral responses Litvak, Vladimir Ratushny, Alexander V. Lampano, Aaron E. Schmitz, Frank Huang, Albert C. Raman, Ayush Rust, Alistair G. Bergthaler, Andreas Aitchison, John D. Aderem, Alan Nature Article Antiviral responses must be tightly regulated to rapidly defend against infection while minimizing inflammatory damage. Type 1 interferons (IFN-I) are crucial mediators of antiviral responses(1) and their transcription is regulated by a variety of transcription factors(2); principal amongst these is the family of interferon regulatory factors (IRFs)(3). The IRF gene regulatory networks are complex and contain multiple feedback loops. The tools of systems biology are well suited to elucidate the complex interactions that give rise to precise coordination of the interferon response. Here we have used an unbiased systems approach to predict that a member of the forkhead family of transcription factors, FOXO3, is a negative regulator of a subset of antiviral genes. This prediction was validated using macrophages isolated from Foxo3-null mice. Genome-wide location analysis combined with gene deletion studies identified the Irf7 gene as a critical target of FOXO3. FOXO3 was identified as a negative regulator of Irf7 transcription and we have further demonstrated that FOXO3, IRF7 and IFN-I form a coherent feed-forward regulatory circuit. Our data suggest that the FOXO3-IRF7 regulatory circuit represents a novel mechanism for establishing the requisite set points in the interferon pathway that balances the beneficial effects and deleterious sequelae of the antiviral response. 2012-09-16 2012-10-18 /pmc/articles/PMC3556990/ /pubmed/22982991 http://dx.doi.org/10.1038/nature11428 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Litvak, Vladimir
Ratushny, Alexander V.
Lampano, Aaron E.
Schmitz, Frank
Huang, Albert C.
Raman, Ayush
Rust, Alistair G.
Bergthaler, Andreas
Aitchison, John D.
Aderem, Alan
A FOXO3/IRF7 gene regulatory circuit limits inflammatory sequelae of antiviral responses
title A FOXO3/IRF7 gene regulatory circuit limits inflammatory sequelae of antiviral responses
title_full A FOXO3/IRF7 gene regulatory circuit limits inflammatory sequelae of antiviral responses
title_fullStr A FOXO3/IRF7 gene regulatory circuit limits inflammatory sequelae of antiviral responses
title_full_unstemmed A FOXO3/IRF7 gene regulatory circuit limits inflammatory sequelae of antiviral responses
title_short A FOXO3/IRF7 gene regulatory circuit limits inflammatory sequelae of antiviral responses
title_sort foxo3/irf7 gene regulatory circuit limits inflammatory sequelae of antiviral responses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3556990/
https://www.ncbi.nlm.nih.gov/pubmed/22982991
http://dx.doi.org/10.1038/nature11428
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