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The antiviral protein viperin interacts with the viral N protein to inhibit proliferation of porcine epidemic diarrhea virus

In the early stage of virus infection, the pattern recognition receptor (PRR) signaling pathway of the host cell is activated to induce interferon production, activating interferon-stimulated genes (ISGs) that encode antiviral proteins that exert antiviral effects. Viperin is one of the innate antiv...

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Autores principales: Wu, Jiaqi, Chi, Heng, Fu, Yali, Cao, Aiping, Shi, Jingxuan, Zhu, Min, Zhang, Lilin, Hua, Deping, Huang, Jinhai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Vienna 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7382991/
https://www.ncbi.nlm.nih.gov/pubmed/32719955
http://dx.doi.org/10.1007/s00705-020-04747-8
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author Wu, Jiaqi
Chi, Heng
Fu, Yali
Cao, Aiping
Shi, Jingxuan
Zhu, Min
Zhang, Lilin
Hua, Deping
Huang, Jinhai
author_facet Wu, Jiaqi
Chi, Heng
Fu, Yali
Cao, Aiping
Shi, Jingxuan
Zhu, Min
Zhang, Lilin
Hua, Deping
Huang, Jinhai
author_sort Wu, Jiaqi
collection PubMed
description In the early stage of virus infection, the pattern recognition receptor (PRR) signaling pathway of the host cell is activated to induce interferon production, activating interferon-stimulated genes (ISGs) that encode antiviral proteins that exert antiviral effects. Viperin is one of the innate antiviral proteins that exert broad-spectrum antiviral effects by various mechanisms. Porcine epidemic diarrhea virus (PEDV) is a coronavirus that causes huge losses to the pig industry. Research on early antiviral responses in the gastrointestinal tract is essential for developing strategies to prevent the spread of PEDV. In this study, we investigated the mechanisms of viperin in PEDV-infected IPEJ-C2 cells. Increased expression of interferon and viperin and decreased replication of PEDV with a clear reduction in the viral load were observed in PEDV-infected IPEC-J2 cells. Amino acids 1–50 of porcine viperin contain an endoplasmic reticulum signal sequence that allows viperin to be anchored to the endoplasmic reticulum and are necessary for its function in inhibiting PEDV proliferation. The interaction of the viperin S-adenosylmethionine domain with the N protein of PEDV was confirmed via confocal laser scanning microscopy and co-immunoprecipitation. This interaction might interfere with viral replication or assembly to reduce virus proliferation. Our results highlight a potential mechanism whereby viperin is able to inhibit PEDV replication and play an antiviral role in innate immunity.
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spelling pubmed-73829912020-07-28 The antiviral protein viperin interacts with the viral N protein to inhibit proliferation of porcine epidemic diarrhea virus Wu, Jiaqi Chi, Heng Fu, Yali Cao, Aiping Shi, Jingxuan Zhu, Min Zhang, Lilin Hua, Deping Huang, Jinhai Arch Virol Original Article In the early stage of virus infection, the pattern recognition receptor (PRR) signaling pathway of the host cell is activated to induce interferon production, activating interferon-stimulated genes (ISGs) that encode antiviral proteins that exert antiviral effects. Viperin is one of the innate antiviral proteins that exert broad-spectrum antiviral effects by various mechanisms. Porcine epidemic diarrhea virus (PEDV) is a coronavirus that causes huge losses to the pig industry. Research on early antiviral responses in the gastrointestinal tract is essential for developing strategies to prevent the spread of PEDV. In this study, we investigated the mechanisms of viperin in PEDV-infected IPEJ-C2 cells. Increased expression of interferon and viperin and decreased replication of PEDV with a clear reduction in the viral load were observed in PEDV-infected IPEC-J2 cells. Amino acids 1–50 of porcine viperin contain an endoplasmic reticulum signal sequence that allows viperin to be anchored to the endoplasmic reticulum and are necessary for its function in inhibiting PEDV proliferation. The interaction of the viperin S-adenosylmethionine domain with the N protein of PEDV was confirmed via confocal laser scanning microscopy and co-immunoprecipitation. This interaction might interfere with viral replication or assembly to reduce virus proliferation. Our results highlight a potential mechanism whereby viperin is able to inhibit PEDV replication and play an antiviral role in innate immunity. Springer Vienna 2020-07-27 2020 /pmc/articles/PMC7382991/ /pubmed/32719955 http://dx.doi.org/10.1007/s00705-020-04747-8 Text en © Springer-Verlag GmbH Austria, part of Springer Nature 2020 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Original Article
Wu, Jiaqi
Chi, Heng
Fu, Yali
Cao, Aiping
Shi, Jingxuan
Zhu, Min
Zhang, Lilin
Hua, Deping
Huang, Jinhai
The antiviral protein viperin interacts with the viral N protein to inhibit proliferation of porcine epidemic diarrhea virus
title The antiviral protein viperin interacts with the viral N protein to inhibit proliferation of porcine epidemic diarrhea virus
title_full The antiviral protein viperin interacts with the viral N protein to inhibit proliferation of porcine epidemic diarrhea virus
title_fullStr The antiviral protein viperin interacts with the viral N protein to inhibit proliferation of porcine epidemic diarrhea virus
title_full_unstemmed The antiviral protein viperin interacts with the viral N protein to inhibit proliferation of porcine epidemic diarrhea virus
title_short The antiviral protein viperin interacts with the viral N protein to inhibit proliferation of porcine epidemic diarrhea virus
title_sort antiviral protein viperin interacts with the viral n protein to inhibit proliferation of porcine epidemic diarrhea virus
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7382991/
https://www.ncbi.nlm.nih.gov/pubmed/32719955
http://dx.doi.org/10.1007/s00705-020-04747-8
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