Cargando…

Middle East Respiratory Syndrome Coronavirus Nonstructural Protein 16 Is Necessary for Interferon Resistance and Viral Pathogenesis

Coronaviruses (CoVs) encode a mixture of highly conserved and novel genes, as well as genetic elements necessary for infection and pathogenesis, raising the possibility of common targets for attenuation and therapeutic design. In this study, we focused on highly conserved nonstructural protein 16 (N...

Descripción completa

Detalles Bibliográficos
Autores principales: Menachery, Vineet D., Gralinski, Lisa E., Mitchell, Hugh D., Dinnon, Kenneth H., Leist, Sarah R., Yount, Boyd L., Graham, Rachel L., McAnarney, Eileen T., Stratton, Kelly G., Cockrell, Adam S., Debbink, Kari, Sims, Amy C., Waters, Katrina M., Baric, Ralph S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5687918/
https://www.ncbi.nlm.nih.gov/pubmed/29152578
http://dx.doi.org/10.1128/mSphere.00346-17
_version_ 1783279053983186944
author Menachery, Vineet D.
Gralinski, Lisa E.
Mitchell, Hugh D.
Dinnon, Kenneth H.
Leist, Sarah R.
Yount, Boyd L.
Graham, Rachel L.
McAnarney, Eileen T.
Stratton, Kelly G.
Cockrell, Adam S.
Debbink, Kari
Sims, Amy C.
Waters, Katrina M.
Baric, Ralph S.
author_facet Menachery, Vineet D.
Gralinski, Lisa E.
Mitchell, Hugh D.
Dinnon, Kenneth H.
Leist, Sarah R.
Yount, Boyd L.
Graham, Rachel L.
McAnarney, Eileen T.
Stratton, Kelly G.
Cockrell, Adam S.
Debbink, Kari
Sims, Amy C.
Waters, Katrina M.
Baric, Ralph S.
author_sort Menachery, Vineet D.
collection PubMed
description Coronaviruses (CoVs) encode a mixture of highly conserved and novel genes, as well as genetic elements necessary for infection and pathogenesis, raising the possibility of common targets for attenuation and therapeutic design. In this study, we focused on highly conserved nonstructural protein 16 (NSP16), a viral 2′O-methyltransferase (2′O-MTase) that encodes critical functions in immune modulation and infection. Using reverse genetics, we disrupted a key motif in the conserved KDKE motif of Middle East respiratory syndrome CoV (MERS-CoV) NSP16 (D130A) and evaluated the effect on viral infection and pathogenesis. While the absence of 2′O-MTase activity had only a marginal impact on propagation and replication in Vero cells, dNSP16 mutant MERS-CoV demonstrated significant attenuation relative to the control both in primary human airway cell cultures and in vivo. Further examination indicated that dNSP16 mutant MERS-CoV had a type I interferon (IFN)-based attenuation and was partially restored in the absence of molecules of IFN-induced proteins with tetratricopeptide repeats. Importantly, the robust attenuation permitted the use of dNSP16 mutant MERS-CoV as a live attenuated vaccine platform protecting from a challenge with a mouse-adapted MERS-CoV strain. These studies demonstrate the importance of the conserved 2′O-MTase activity for CoV pathogenesis and highlight NSP16 as a conserved universal target for rapid live attenuated vaccine design in an expanding CoV outbreak setting. IMPORTANCE Coronavirus (CoV) emergence in both humans and livestock represents a significant threat to global public health, as evidenced by the sudden emergence of severe acute respiratory syndrome CoV (SARS-CoV), MERS-CoV, porcine epidemic diarrhea virus, and swine delta CoV in the 21st century. These studies describe an approach that effectively targets the highly conserved 2′O-MTase activity of CoVs for attenuation. With clear understanding of the IFN/IFIT (IFN-induced proteins with tetratricopeptide repeats)-based mechanism, NSP16 mutants provide a suitable target for a live attenuated vaccine platform, as well as therapeutic development for both current and future emergent CoV strains. Importantly, other approaches targeting other conserved pan-CoV functions have not yet proven effective against MERS-CoV, illustrating the broad applicability of targeting viral 2′O-MTase function across CoVs.
format Online
Article
Text
id pubmed-5687918
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-56879182017-11-17 Middle East Respiratory Syndrome Coronavirus Nonstructural Protein 16 Is Necessary for Interferon Resistance and Viral Pathogenesis Menachery, Vineet D. Gralinski, Lisa E. Mitchell, Hugh D. Dinnon, Kenneth H. Leist, Sarah R. Yount, Boyd L. Graham, Rachel L. McAnarney, Eileen T. Stratton, Kelly G. Cockrell, Adam S. Debbink, Kari Sims, Amy C. Waters, Katrina M. Baric, Ralph S. mSphere Research Article Coronaviruses (CoVs) encode a mixture of highly conserved and novel genes, as well as genetic elements necessary for infection and pathogenesis, raising the possibility of common targets for attenuation and therapeutic design. In this study, we focused on highly conserved nonstructural protein 16 (NSP16), a viral 2′O-methyltransferase (2′O-MTase) that encodes critical functions in immune modulation and infection. Using reverse genetics, we disrupted a key motif in the conserved KDKE motif of Middle East respiratory syndrome CoV (MERS-CoV) NSP16 (D130A) and evaluated the effect on viral infection and pathogenesis. While the absence of 2′O-MTase activity had only a marginal impact on propagation and replication in Vero cells, dNSP16 mutant MERS-CoV demonstrated significant attenuation relative to the control both in primary human airway cell cultures and in vivo. Further examination indicated that dNSP16 mutant MERS-CoV had a type I interferon (IFN)-based attenuation and was partially restored in the absence of molecules of IFN-induced proteins with tetratricopeptide repeats. Importantly, the robust attenuation permitted the use of dNSP16 mutant MERS-CoV as a live attenuated vaccine platform protecting from a challenge with a mouse-adapted MERS-CoV strain. These studies demonstrate the importance of the conserved 2′O-MTase activity for CoV pathogenesis and highlight NSP16 as a conserved universal target for rapid live attenuated vaccine design in an expanding CoV outbreak setting. IMPORTANCE Coronavirus (CoV) emergence in both humans and livestock represents a significant threat to global public health, as evidenced by the sudden emergence of severe acute respiratory syndrome CoV (SARS-CoV), MERS-CoV, porcine epidemic diarrhea virus, and swine delta CoV in the 21st century. These studies describe an approach that effectively targets the highly conserved 2′O-MTase activity of CoVs for attenuation. With clear understanding of the IFN/IFIT (IFN-induced proteins with tetratricopeptide repeats)-based mechanism, NSP16 mutants provide a suitable target for a live attenuated vaccine platform, as well as therapeutic development for both current and future emergent CoV strains. Importantly, other approaches targeting other conserved pan-CoV functions have not yet proven effective against MERS-CoV, illustrating the broad applicability of targeting viral 2′O-MTase function across CoVs. American Society for Microbiology 2017-11-15 /pmc/articles/PMC5687918/ /pubmed/29152578 http://dx.doi.org/10.1128/mSphere.00346-17 Text en Copyright © 2017 Menachery et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Menachery, Vineet D.
Gralinski, Lisa E.
Mitchell, Hugh D.
Dinnon, Kenneth H.
Leist, Sarah R.
Yount, Boyd L.
Graham, Rachel L.
McAnarney, Eileen T.
Stratton, Kelly G.
Cockrell, Adam S.
Debbink, Kari
Sims, Amy C.
Waters, Katrina M.
Baric, Ralph S.
Middle East Respiratory Syndrome Coronavirus Nonstructural Protein 16 Is Necessary for Interferon Resistance and Viral Pathogenesis
title Middle East Respiratory Syndrome Coronavirus Nonstructural Protein 16 Is Necessary for Interferon Resistance and Viral Pathogenesis
title_full Middle East Respiratory Syndrome Coronavirus Nonstructural Protein 16 Is Necessary for Interferon Resistance and Viral Pathogenesis
title_fullStr Middle East Respiratory Syndrome Coronavirus Nonstructural Protein 16 Is Necessary for Interferon Resistance and Viral Pathogenesis
title_full_unstemmed Middle East Respiratory Syndrome Coronavirus Nonstructural Protein 16 Is Necessary for Interferon Resistance and Viral Pathogenesis
title_short Middle East Respiratory Syndrome Coronavirus Nonstructural Protein 16 Is Necessary for Interferon Resistance and Viral Pathogenesis
title_sort middle east respiratory syndrome coronavirus nonstructural protein 16 is necessary for interferon resistance and viral pathogenesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5687918/
https://www.ncbi.nlm.nih.gov/pubmed/29152578
http://dx.doi.org/10.1128/mSphere.00346-17
work_keys_str_mv AT menacheryvineetd middleeastrespiratorysyndromecoronavirusnonstructuralprotein16isnecessaryforinterferonresistanceandviralpathogenesis
AT gralinskilisae middleeastrespiratorysyndromecoronavirusnonstructuralprotein16isnecessaryforinterferonresistanceandviralpathogenesis
AT mitchellhughd middleeastrespiratorysyndromecoronavirusnonstructuralprotein16isnecessaryforinterferonresistanceandviralpathogenesis
AT dinnonkennethh middleeastrespiratorysyndromecoronavirusnonstructuralprotein16isnecessaryforinterferonresistanceandviralpathogenesis
AT leistsarahr middleeastrespiratorysyndromecoronavirusnonstructuralprotein16isnecessaryforinterferonresistanceandviralpathogenesis
AT yountboydl middleeastrespiratorysyndromecoronavirusnonstructuralprotein16isnecessaryforinterferonresistanceandviralpathogenesis
AT grahamrachell middleeastrespiratorysyndromecoronavirusnonstructuralprotein16isnecessaryforinterferonresistanceandviralpathogenesis
AT mcanarneyeileent middleeastrespiratorysyndromecoronavirusnonstructuralprotein16isnecessaryforinterferonresistanceandviralpathogenesis
AT strattonkellyg middleeastrespiratorysyndromecoronavirusnonstructuralprotein16isnecessaryforinterferonresistanceandviralpathogenesis
AT cockrelladams middleeastrespiratorysyndromecoronavirusnonstructuralprotein16isnecessaryforinterferonresistanceandviralpathogenesis
AT debbinkkari middleeastrespiratorysyndromecoronavirusnonstructuralprotein16isnecessaryforinterferonresistanceandviralpathogenesis
AT simsamyc middleeastrespiratorysyndromecoronavirusnonstructuralprotein16isnecessaryforinterferonresistanceandviralpathogenesis
AT waterskatrinam middleeastrespiratorysyndromecoronavirusnonstructuralprotein16isnecessaryforinterferonresistanceandviralpathogenesis
AT baricralphs middleeastrespiratorysyndromecoronavirusnonstructuralprotein16isnecessaryforinterferonresistanceandviralpathogenesis