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HERC6 Is the Main E3 Ligase for Global ISG15 Conjugation in Mouse Cells

Type I interferon (IFN) stimulates expression and conjugation of the ubiquitin-like modifier IFN-stimulated gene 15 (ISG15), thereby restricting replication of a wide variety of viruses. Conjugation of ISG15 is critical for its antiviral activity in mice. HECT domain and RCC1-like domain containing...

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Autores principales: Oudshoorn, Diede, van Boheemen, Sander, Sánchez-Aparicio, Maria Teresa, Rajsbaum, Ricardo, García-Sastre, Adolfo, Versteeg, Gijs A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3260183/
https://www.ncbi.nlm.nih.gov/pubmed/22272257
http://dx.doi.org/10.1371/journal.pone.0029870
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author Oudshoorn, Diede
van Boheemen, Sander
Sánchez-Aparicio, Maria Teresa
Rajsbaum, Ricardo
García-Sastre, Adolfo
Versteeg, Gijs A.
author_facet Oudshoorn, Diede
van Boheemen, Sander
Sánchez-Aparicio, Maria Teresa
Rajsbaum, Ricardo
García-Sastre, Adolfo
Versteeg, Gijs A.
author_sort Oudshoorn, Diede
collection PubMed
description Type I interferon (IFN) stimulates expression and conjugation of the ubiquitin-like modifier IFN-stimulated gene 15 (ISG15), thereby restricting replication of a wide variety of viruses. Conjugation of ISG15 is critical for its antiviral activity in mice. HECT domain and RCC1-like domain containing protein 5 (HerC5) mediates global ISGylation in human cells, whereas its closest relative, HerC6, does not. So far, the requirement of HerC5 for ISG15-mediated antiviral activity has remained unclear. One of the main obstacles to address this issue has been that no HerC5 homologue exists in mice, hampering the generation of a good knock-out model. However, mice do express a homologue of HerC6 that, in contrast to human HerC6, can mediate ISGylation. Here we report that the mouse HerC6 N-terminal RCC1-like domain (RLD) allows ISG15 conjugation when replacing the corresponding domain in the human HerC6 homologue. In addition, sequences in the C-terminal HECT domain of mouse HerC6 also appear to facilitate efficient ISGylation. Mouse HerC6 paralleled human HerC5 in localization and IFN-inducibility. Moreover, HerC6 knock-down in mouse cells abolished global ISGylation, whereas its over expression enhanced the IFNβ promoter and conferred antiviral activity against vesicular stomatitis virus and Newcastle disease virus. Together these data indicate that HerC6 is likely the functional counterpart of human HerC5 in mouse cells, suggesting that HerC6(−/−) mice may provide a feasible model to study the role of human HerC5 in antiviral responses.
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spelling pubmed-32601832012-01-23 HERC6 Is the Main E3 Ligase for Global ISG15 Conjugation in Mouse Cells Oudshoorn, Diede van Boheemen, Sander Sánchez-Aparicio, Maria Teresa Rajsbaum, Ricardo García-Sastre, Adolfo Versteeg, Gijs A. PLoS One Research Article Type I interferon (IFN) stimulates expression and conjugation of the ubiquitin-like modifier IFN-stimulated gene 15 (ISG15), thereby restricting replication of a wide variety of viruses. Conjugation of ISG15 is critical for its antiviral activity in mice. HECT domain and RCC1-like domain containing protein 5 (HerC5) mediates global ISGylation in human cells, whereas its closest relative, HerC6, does not. So far, the requirement of HerC5 for ISG15-mediated antiviral activity has remained unclear. One of the main obstacles to address this issue has been that no HerC5 homologue exists in mice, hampering the generation of a good knock-out model. However, mice do express a homologue of HerC6 that, in contrast to human HerC6, can mediate ISGylation. Here we report that the mouse HerC6 N-terminal RCC1-like domain (RLD) allows ISG15 conjugation when replacing the corresponding domain in the human HerC6 homologue. In addition, sequences in the C-terminal HECT domain of mouse HerC6 also appear to facilitate efficient ISGylation. Mouse HerC6 paralleled human HerC5 in localization and IFN-inducibility. Moreover, HerC6 knock-down in mouse cells abolished global ISGylation, whereas its over expression enhanced the IFNβ promoter and conferred antiviral activity against vesicular stomatitis virus and Newcastle disease virus. Together these data indicate that HerC6 is likely the functional counterpart of human HerC5 in mouse cells, suggesting that HerC6(−/−) mice may provide a feasible model to study the role of human HerC5 in antiviral responses. Public Library of Science 2012-01-17 /pmc/articles/PMC3260183/ /pubmed/22272257 http://dx.doi.org/10.1371/journal.pone.0029870 Text en Oudshoorn 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
Oudshoorn, Diede
van Boheemen, Sander
Sánchez-Aparicio, Maria Teresa
Rajsbaum, Ricardo
García-Sastre, Adolfo
Versteeg, Gijs A.
HERC6 Is the Main E3 Ligase for Global ISG15 Conjugation in Mouse Cells
title HERC6 Is the Main E3 Ligase for Global ISG15 Conjugation in Mouse Cells
title_full HERC6 Is the Main E3 Ligase for Global ISG15 Conjugation in Mouse Cells
title_fullStr HERC6 Is the Main E3 Ligase for Global ISG15 Conjugation in Mouse Cells
title_full_unstemmed HERC6 Is the Main E3 Ligase for Global ISG15 Conjugation in Mouse Cells
title_short HERC6 Is the Main E3 Ligase for Global ISG15 Conjugation in Mouse Cells
title_sort herc6 is the main e3 ligase for global isg15 conjugation in mouse cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3260183/
https://www.ncbi.nlm.nih.gov/pubmed/22272257
http://dx.doi.org/10.1371/journal.pone.0029870
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