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Mouse-Adapted H9N2 Influenza A Virus PB2 Protein M147L and E627K Mutations Are Critical for High Virulence

H9N2 influenza viruses have been circulating worldwide in multiple avian species and have repeatedly infected humans to cause typical disease. The continued avian-to-human interspecies transmission of H9N2 viruses raises concerns about the possibility of viral adaption with increased virulence for h...

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Autores principales: Wang, Jingjing, Sun, Yipeng, Xu, Qi, Tan, Yuanyuan, Pu, Juan, Yang, Hanchun, Brown, Earl G., Liu, Jinhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3393695/
https://www.ncbi.nlm.nih.gov/pubmed/22808250
http://dx.doi.org/10.1371/journal.pone.0040752
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author Wang, Jingjing
Sun, Yipeng
Xu, Qi
Tan, Yuanyuan
Pu, Juan
Yang, Hanchun
Brown, Earl G.
Liu, Jinhua
author_facet Wang, Jingjing
Sun, Yipeng
Xu, Qi
Tan, Yuanyuan
Pu, Juan
Yang, Hanchun
Brown, Earl G.
Liu, Jinhua
author_sort Wang, Jingjing
collection PubMed
description H9N2 influenza viruses have been circulating worldwide in multiple avian species and have repeatedly infected humans to cause typical disease. The continued avian-to-human interspecies transmission of H9N2 viruses raises concerns about the possibility of viral adaption with increased virulence for humans. To investigate the genetic basis of H9N2 influenza virus host range and pathogenicity in mammals, we generated a mouse-adapted H9N2 virus (SD16-MA) that possessed significantly higher virulence than wide-type virus (SD16). Increased virulence was detectable after 8 sequential lung passages in mice. Five amino acid substitutions were found in the genome of SD16-MA compared with SD16 virus: PB2 (M147L, V250G and E627K), HA (L226Q) and M1 (R210K). Assessments of replication in mice showed that all of the SD16-MA PB2, HA and M1 genome segments increased virus replication; however, only the mouse-adapted PB2 significantly increased virulence. Although the PB2 E627K amino acid substitution enhanced viral polymerase activity and replication, none of the single mutations of mouse adapted PB2 could confer increased virulence on the SD16 backbone. The combination of M147L and E627K significantly enhanced viral replication ability and virulence in mice. Thus, our results show that the combination of PB2 amino acids at position 147 and 627 is critical for the increased pathogenicity of H9N2 influenza virus in mammalian host.
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spelling pubmed-33936952012-07-17 Mouse-Adapted H9N2 Influenza A Virus PB2 Protein M147L and E627K Mutations Are Critical for High Virulence Wang, Jingjing Sun, Yipeng Xu, Qi Tan, Yuanyuan Pu, Juan Yang, Hanchun Brown, Earl G. Liu, Jinhua PLoS One Research Article H9N2 influenza viruses have been circulating worldwide in multiple avian species and have repeatedly infected humans to cause typical disease. The continued avian-to-human interspecies transmission of H9N2 viruses raises concerns about the possibility of viral adaption with increased virulence for humans. To investigate the genetic basis of H9N2 influenza virus host range and pathogenicity in mammals, we generated a mouse-adapted H9N2 virus (SD16-MA) that possessed significantly higher virulence than wide-type virus (SD16). Increased virulence was detectable after 8 sequential lung passages in mice. Five amino acid substitutions were found in the genome of SD16-MA compared with SD16 virus: PB2 (M147L, V250G and E627K), HA (L226Q) and M1 (R210K). Assessments of replication in mice showed that all of the SD16-MA PB2, HA and M1 genome segments increased virus replication; however, only the mouse-adapted PB2 significantly increased virulence. Although the PB2 E627K amino acid substitution enhanced viral polymerase activity and replication, none of the single mutations of mouse adapted PB2 could confer increased virulence on the SD16 backbone. The combination of M147L and E627K significantly enhanced viral replication ability and virulence in mice. Thus, our results show that the combination of PB2 amino acids at position 147 and 627 is critical for the increased pathogenicity of H9N2 influenza virus in mammalian host. Public Library of Science 2012-07-10 /pmc/articles/PMC3393695/ /pubmed/22808250 http://dx.doi.org/10.1371/journal.pone.0040752 Text en Wang 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
Wang, Jingjing
Sun, Yipeng
Xu, Qi
Tan, Yuanyuan
Pu, Juan
Yang, Hanchun
Brown, Earl G.
Liu, Jinhua
Mouse-Adapted H9N2 Influenza A Virus PB2 Protein M147L and E627K Mutations Are Critical for High Virulence
title Mouse-Adapted H9N2 Influenza A Virus PB2 Protein M147L and E627K Mutations Are Critical for High Virulence
title_full Mouse-Adapted H9N2 Influenza A Virus PB2 Protein M147L and E627K Mutations Are Critical for High Virulence
title_fullStr Mouse-Adapted H9N2 Influenza A Virus PB2 Protein M147L and E627K Mutations Are Critical for High Virulence
title_full_unstemmed Mouse-Adapted H9N2 Influenza A Virus PB2 Protein M147L and E627K Mutations Are Critical for High Virulence
title_short Mouse-Adapted H9N2 Influenza A Virus PB2 Protein M147L and E627K Mutations Are Critical for High Virulence
title_sort mouse-adapted h9n2 influenza a virus pb2 protein m147l and e627k mutations are critical for high virulence
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3393695/
https://www.ncbi.nlm.nih.gov/pubmed/22808250
http://dx.doi.org/10.1371/journal.pone.0040752
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