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ISG15 governs mitochondrial function in macrophages following vaccinia virus infection

The interferon (IFN)-stimulated gene 15 (ISG15) encodes one of the most abundant proteins induced by interferon, and its expression is associated with antiviral immunity. To identify protein components implicated in IFN and ISG15 signaling, we compared the proteomes of ISG15(-/-) and ISG15(+/+) bone...

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Autores principales: Baldanta, Sara, Fernández-Escobar, Mercedes, Acín-Perez, Rebeca, Albert, Manuel, Camafeita, Emilio, Jorge, Inmaculada, Vázquez, Jesús, Enríquez, José Antonio, Guerra, Susana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5659798/
https://www.ncbi.nlm.nih.gov/pubmed/29077752
http://dx.doi.org/10.1371/journal.ppat.1006651
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author Baldanta, Sara
Fernández-Escobar, Mercedes
Acín-Perez, Rebeca
Albert, Manuel
Camafeita, Emilio
Jorge, Inmaculada
Vázquez, Jesús
Enríquez, José Antonio
Guerra, Susana
author_facet Baldanta, Sara
Fernández-Escobar, Mercedes
Acín-Perez, Rebeca
Albert, Manuel
Camafeita, Emilio
Jorge, Inmaculada
Vázquez, Jesús
Enríquez, José Antonio
Guerra, Susana
author_sort Baldanta, Sara
collection PubMed
description The interferon (IFN)-stimulated gene 15 (ISG15) encodes one of the most abundant proteins induced by interferon, and its expression is associated with antiviral immunity. To identify protein components implicated in IFN and ISG15 signaling, we compared the proteomes of ISG15(-/-) and ISG15(+/+) bone marrow derived macrophages (BMDM) after vaccinia virus (VACV) infection. The results of this analysis revealed that mitochondrial dysfunction and oxidative phosphorylation (OXPHOS) were pathways altered in ISG15(-/-) BMDM treated with IFN. Mitochondrial respiration, Adenosine triphosphate (ATP) and reactive oxygen species (ROS) production was higher in ISG15(+/+) BMDM than in ISG15(-/-) BMDM following IFN treatment, indicating the involvement of ISG15-dependent mechanisms. An additional consequence of ISG15 depletion was a significant change in macrophage polarization. Although infected ISG15(-/-) macrophages showed a robust proinflammatory cytokine expression pattern typical of an M1 phenotype, a clear blockade of nitric oxide (NO) production and arginase-1 activation was detected. Accordingly, following IFN treatment, NO release was higher in ISG15(+/+) macrophages than in ISG15(-/-) macrophages concomitant with a decrease in viral titer. Thus, ISG15(-/-) macrophages were permissive for VACV replication following IFN treatment. In conclusion, our results demonstrate that ISG15 governs the dynamic functionality of mitochondria, specifically, OXPHOS and mitophagy, broadening its physiological role as an antiviral agent.
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spelling pubmed-56597982017-11-09 ISG15 governs mitochondrial function in macrophages following vaccinia virus infection Baldanta, Sara Fernández-Escobar, Mercedes Acín-Perez, Rebeca Albert, Manuel Camafeita, Emilio Jorge, Inmaculada Vázquez, Jesús Enríquez, José Antonio Guerra, Susana PLoS Pathog Research Article The interferon (IFN)-stimulated gene 15 (ISG15) encodes one of the most abundant proteins induced by interferon, and its expression is associated with antiviral immunity. To identify protein components implicated in IFN and ISG15 signaling, we compared the proteomes of ISG15(-/-) and ISG15(+/+) bone marrow derived macrophages (BMDM) after vaccinia virus (VACV) infection. The results of this analysis revealed that mitochondrial dysfunction and oxidative phosphorylation (OXPHOS) were pathways altered in ISG15(-/-) BMDM treated with IFN. Mitochondrial respiration, Adenosine triphosphate (ATP) and reactive oxygen species (ROS) production was higher in ISG15(+/+) BMDM than in ISG15(-/-) BMDM following IFN treatment, indicating the involvement of ISG15-dependent mechanisms. An additional consequence of ISG15 depletion was a significant change in macrophage polarization. Although infected ISG15(-/-) macrophages showed a robust proinflammatory cytokine expression pattern typical of an M1 phenotype, a clear blockade of nitric oxide (NO) production and arginase-1 activation was detected. Accordingly, following IFN treatment, NO release was higher in ISG15(+/+) macrophages than in ISG15(-/-) macrophages concomitant with a decrease in viral titer. Thus, ISG15(-/-) macrophages were permissive for VACV replication following IFN treatment. In conclusion, our results demonstrate that ISG15 governs the dynamic functionality of mitochondria, specifically, OXPHOS and mitophagy, broadening its physiological role as an antiviral agent. Public Library of Science 2017-10-27 /pmc/articles/PMC5659798/ /pubmed/29077752 http://dx.doi.org/10.1371/journal.ppat.1006651 Text en © 2017 Baldanta 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Baldanta, Sara
Fernández-Escobar, Mercedes
Acín-Perez, Rebeca
Albert, Manuel
Camafeita, Emilio
Jorge, Inmaculada
Vázquez, Jesús
Enríquez, José Antonio
Guerra, Susana
ISG15 governs mitochondrial function in macrophages following vaccinia virus infection
title ISG15 governs mitochondrial function in macrophages following vaccinia virus infection
title_full ISG15 governs mitochondrial function in macrophages following vaccinia virus infection
title_fullStr ISG15 governs mitochondrial function in macrophages following vaccinia virus infection
title_full_unstemmed ISG15 governs mitochondrial function in macrophages following vaccinia virus infection
title_short ISG15 governs mitochondrial function in macrophages following vaccinia virus infection
title_sort isg15 governs mitochondrial function in macrophages following vaccinia virus infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5659798/
https://www.ncbi.nlm.nih.gov/pubmed/29077752
http://dx.doi.org/10.1371/journal.ppat.1006651
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