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USP18-Based Negative Feedback Control Is Induced by Type I and Type III Interferons and Specifically Inactivates Interferon α Response

Type I interferons (IFN) are cytokines that are rapidly secreted upon microbial infections and regulate all aspects of the immune response. In humans 15 type I IFN subtypes exist, of which IFN α2 and IFN β are used in the clinic for treatment of different pathologies. IFN α2 and IFN β are non redund...

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Autores principales: François-Newton, Véronique, Magno de Freitas Almeida, Gabriel, Payelle-Brogard, Béatrice, Monneron, Danièle, Pichard-Garcia, Lydiane, Piehler, Jacob, Pellegrini, Sandra, Uzé, Gilles
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3136508/
https://www.ncbi.nlm.nih.gov/pubmed/21779393
http://dx.doi.org/10.1371/journal.pone.0022200
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author François-Newton, Véronique
Magno de Freitas Almeida, Gabriel
Payelle-Brogard, Béatrice
Monneron, Danièle
Pichard-Garcia, Lydiane
Piehler, Jacob
Pellegrini, Sandra
Uzé, Gilles
author_facet François-Newton, Véronique
Magno de Freitas Almeida, Gabriel
Payelle-Brogard, Béatrice
Monneron, Danièle
Pichard-Garcia, Lydiane
Piehler, Jacob
Pellegrini, Sandra
Uzé, Gilles
author_sort François-Newton, Véronique
collection PubMed
description Type I interferons (IFN) are cytokines that are rapidly secreted upon microbial infections and regulate all aspects of the immune response. In humans 15 type I IFN subtypes exist, of which IFN α2 and IFN β are used in the clinic for treatment of different pathologies. IFN α2 and IFN β are non redundant in their expression and in their potency to exert specific bioactivities. The more recently identified type III IFNs (3 IFN λ or IL-28/IL-29) bind an unrelated cell-type restricted receptor. Downstream of these two receptor complexes is a shared Jak/Stat pathway. Several mechanisms that contribute to the shut down of the IFN-induced signaling have been described at the molecular level. In particular, it has long been known that type I IFN induces the establishment of a desensitized state. In this work we asked how the IFN-induced desensitization integrates into the network built by the multiple type I IFN subtypes and type III IFNs. We show that priming of cells with either type I IFN or type III IFN interferes with the cell's ability to further respond to all IFN α subtypes. Importantly, primed cells are differentially desensitized in that they retain sensitivity to IFN β. We show that USP18 is necessary and sufficient to induce differential desensitization, by impairing the formation of functional binding sites for IFN α2. Our data highlight a new type of differential between IFNs α and IFN β and underline a cross-talk between type I and type III IFN. This cross-talk could shed light on the reported genetic variation in the IFN λ loci, which has been associated with persistence of hepatitis C virus and patient's response to IFN α2 therapy.
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spelling pubmed-31365082011-07-21 USP18-Based Negative Feedback Control Is Induced by Type I and Type III Interferons and Specifically Inactivates Interferon α Response François-Newton, Véronique Magno de Freitas Almeida, Gabriel Payelle-Brogard, Béatrice Monneron, Danièle Pichard-Garcia, Lydiane Piehler, Jacob Pellegrini, Sandra Uzé, Gilles PLoS One Research Article Type I interferons (IFN) are cytokines that are rapidly secreted upon microbial infections and regulate all aspects of the immune response. In humans 15 type I IFN subtypes exist, of which IFN α2 and IFN β are used in the clinic for treatment of different pathologies. IFN α2 and IFN β are non redundant in their expression and in their potency to exert specific bioactivities. The more recently identified type III IFNs (3 IFN λ or IL-28/IL-29) bind an unrelated cell-type restricted receptor. Downstream of these two receptor complexes is a shared Jak/Stat pathway. Several mechanisms that contribute to the shut down of the IFN-induced signaling have been described at the molecular level. In particular, it has long been known that type I IFN induces the establishment of a desensitized state. In this work we asked how the IFN-induced desensitization integrates into the network built by the multiple type I IFN subtypes and type III IFNs. We show that priming of cells with either type I IFN or type III IFN interferes with the cell's ability to further respond to all IFN α subtypes. Importantly, primed cells are differentially desensitized in that they retain sensitivity to IFN β. We show that USP18 is necessary and sufficient to induce differential desensitization, by impairing the formation of functional binding sites for IFN α2. Our data highlight a new type of differential between IFNs α and IFN β and underline a cross-talk between type I and type III IFN. This cross-talk could shed light on the reported genetic variation in the IFN λ loci, which has been associated with persistence of hepatitis C virus and patient's response to IFN α2 therapy. Public Library of Science 2011-07-14 /pmc/articles/PMC3136508/ /pubmed/21779393 http://dx.doi.org/10.1371/journal.pone.0022200 Text en François-Newton 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
François-Newton, Véronique
Magno de Freitas Almeida, Gabriel
Payelle-Brogard, Béatrice
Monneron, Danièle
Pichard-Garcia, Lydiane
Piehler, Jacob
Pellegrini, Sandra
Uzé, Gilles
USP18-Based Negative Feedback Control Is Induced by Type I and Type III Interferons and Specifically Inactivates Interferon α Response
title USP18-Based Negative Feedback Control Is Induced by Type I and Type III Interferons and Specifically Inactivates Interferon α Response
title_full USP18-Based Negative Feedback Control Is Induced by Type I and Type III Interferons and Specifically Inactivates Interferon α Response
title_fullStr USP18-Based Negative Feedback Control Is Induced by Type I and Type III Interferons and Specifically Inactivates Interferon α Response
title_full_unstemmed USP18-Based Negative Feedback Control Is Induced by Type I and Type III Interferons and Specifically Inactivates Interferon α Response
title_short USP18-Based Negative Feedback Control Is Induced by Type I and Type III Interferons and Specifically Inactivates Interferon α Response
title_sort usp18-based negative feedback control is induced by type i and type iii interferons and specifically inactivates interferon α response
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3136508/
https://www.ncbi.nlm.nih.gov/pubmed/21779393
http://dx.doi.org/10.1371/journal.pone.0022200
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