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Vaccinia virus protein N2 is a nuclear IRF3 inhibitor that promotes virulence

Vaccinia virus (VACV) expresses many proteins that are non-essential for virus replication but promote virulence by inhibiting components of the host immune response to infection. These immunomodulators include a family of proteins that have, or are predicted to have, a structure related to the B-ce...

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Autores principales: Ferguson, Brian J., Benfield, Camilla T. O., Ren, Hongwei, Lee, Vivian H., Frazer, Gordon L., Strnadova, Pavla, Sumner, Rebecca P., Smith, Geoffrey L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society for General Microbiology 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3749055/
https://www.ncbi.nlm.nih.gov/pubmed/23761407
http://dx.doi.org/10.1099/vir.0.054114-0
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author Ferguson, Brian J.
Benfield, Camilla T. O.
Ren, Hongwei
Lee, Vivian H.
Frazer, Gordon L.
Strnadova, Pavla
Sumner, Rebecca P.
Smith, Geoffrey L.
author_facet Ferguson, Brian J.
Benfield, Camilla T. O.
Ren, Hongwei
Lee, Vivian H.
Frazer, Gordon L.
Strnadova, Pavla
Sumner, Rebecca P.
Smith, Geoffrey L.
author_sort Ferguson, Brian J.
collection PubMed
description Vaccinia virus (VACV) expresses many proteins that are non-essential for virus replication but promote virulence by inhibiting components of the host immune response to infection. These immunomodulators include a family of proteins that have, or are predicted to have, a structure related to the B-cell lymphoma (Bcl)-2 protein. Five members of the VACV Bcl-2 family (N1, B14, A52, F1 and K7) have had their crystal structure solved, others have been characterized and a function assigned (C6, A46), and others are predicted to be Bcl-2 proteins but are uncharacterized hitherto (N2, B22, C1). Data presented here show that N2 is a nuclear protein that is expressed early during infection and inhibits the activation of interferon regulatory factor (IRF)3. Consistent with its nuclear localization, N2 inhibits IRF3 downstream of the TANK-binding kinase (TBK)-1 and after IRF3 translocation into the nucleus. A mutant VACV strain Western Reserve lacking the N2L gene (vΔN2) showed normal replication and spread in cultured cells compared to wild-type parental (vN2) and revertant (vN2-rev) viruses, but was attenuated in two murine models of infection. After intranasal infection, the vΔN2 mutant induced lower weight loss and signs of illness, and virus was cleared more rapidly from the infected tissue. In the intradermal model of infection, vΔN2 induced smaller lesions that were resolved more rapidly. In summary, the N2 protein is an intracellular virulence factor that inhibits IRF3 activity in the nucleus.
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spelling pubmed-37490552013-09-01 Vaccinia virus protein N2 is a nuclear IRF3 inhibitor that promotes virulence Ferguson, Brian J. Benfield, Camilla T. O. Ren, Hongwei Lee, Vivian H. Frazer, Gordon L. Strnadova, Pavla Sumner, Rebecca P. Smith, Geoffrey L. J Gen Virol Animal Vaccinia virus (VACV) expresses many proteins that are non-essential for virus replication but promote virulence by inhibiting components of the host immune response to infection. These immunomodulators include a family of proteins that have, or are predicted to have, a structure related to the B-cell lymphoma (Bcl)-2 protein. Five members of the VACV Bcl-2 family (N1, B14, A52, F1 and K7) have had their crystal structure solved, others have been characterized and a function assigned (C6, A46), and others are predicted to be Bcl-2 proteins but are uncharacterized hitherto (N2, B22, C1). Data presented here show that N2 is a nuclear protein that is expressed early during infection and inhibits the activation of interferon regulatory factor (IRF)3. Consistent with its nuclear localization, N2 inhibits IRF3 downstream of the TANK-binding kinase (TBK)-1 and after IRF3 translocation into the nucleus. A mutant VACV strain Western Reserve lacking the N2L gene (vΔN2) showed normal replication and spread in cultured cells compared to wild-type parental (vN2) and revertant (vN2-rev) viruses, but was attenuated in two murine models of infection. After intranasal infection, the vΔN2 mutant induced lower weight loss and signs of illness, and virus was cleared more rapidly from the infected tissue. In the intradermal model of infection, vΔN2 induced smaller lesions that were resolved more rapidly. In summary, the N2 protein is an intracellular virulence factor that inhibits IRF3 activity in the nucleus. Society for General Microbiology 2013-09 /pmc/articles/PMC3749055/ /pubmed/23761407 http://dx.doi.org/10.1099/vir.0.054114-0 Text en © 2013 SGM http://creativecommons.org/licenses/by/2.5/ 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 work is properly cited.
spellingShingle Animal
Ferguson, Brian J.
Benfield, Camilla T. O.
Ren, Hongwei
Lee, Vivian H.
Frazer, Gordon L.
Strnadova, Pavla
Sumner, Rebecca P.
Smith, Geoffrey L.
Vaccinia virus protein N2 is a nuclear IRF3 inhibitor that promotes virulence
title Vaccinia virus protein N2 is a nuclear IRF3 inhibitor that promotes virulence
title_full Vaccinia virus protein N2 is a nuclear IRF3 inhibitor that promotes virulence
title_fullStr Vaccinia virus protein N2 is a nuclear IRF3 inhibitor that promotes virulence
title_full_unstemmed Vaccinia virus protein N2 is a nuclear IRF3 inhibitor that promotes virulence
title_short Vaccinia virus protein N2 is a nuclear IRF3 inhibitor that promotes virulence
title_sort vaccinia virus protein n2 is a nuclear irf3 inhibitor that promotes virulence
topic Animal
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3749055/
https://www.ncbi.nlm.nih.gov/pubmed/23761407
http://dx.doi.org/10.1099/vir.0.054114-0
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