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Molecular Signature of High Yield (Growth) Influenza A Virus Reassortants Prepared as Candidate Vaccine Seeds

BACKGROUND: Human influenza virus isolates generally grow poorly in embryonated chicken eggs. Hence, gene reassortment of influenza A wild type (wt) viruses is performed with a highly egg adapted donor virus, A/Puerto Rico/8/1934 (PR8), to provide the high yield reassortant (HYR) viral ‘seeds’ for v...

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Autores principales: Ramanunninair, Manojkumar, Le, Jianhua, Onodera, Shiroh, Fulvini, Andrew A., Pokorny, Barbara A., Silverman, Jeanmarie, Devis, Rene, Arroyo, Jennifer M., He, Yu, Boyne, Alex, Bera, Jayati, Halpin, Rebecca, Hine, Erin, Spiro, David J., Bucher, Doris
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3679156/
https://www.ncbi.nlm.nih.gov/pubmed/23776579
http://dx.doi.org/10.1371/journal.pone.0065955
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author Ramanunninair, Manojkumar
Le, Jianhua
Onodera, Shiroh
Fulvini, Andrew A.
Pokorny, Barbara A.
Silverman, Jeanmarie
Devis, Rene
Arroyo, Jennifer M.
He, Yu
Boyne, Alex
Bera, Jayati
Halpin, Rebecca
Hine, Erin
Spiro, David J.
Bucher, Doris
author_facet Ramanunninair, Manojkumar
Le, Jianhua
Onodera, Shiroh
Fulvini, Andrew A.
Pokorny, Barbara A.
Silverman, Jeanmarie
Devis, Rene
Arroyo, Jennifer M.
He, Yu
Boyne, Alex
Bera, Jayati
Halpin, Rebecca
Hine, Erin
Spiro, David J.
Bucher, Doris
author_sort Ramanunninair, Manojkumar
collection PubMed
description BACKGROUND: Human influenza virus isolates generally grow poorly in embryonated chicken eggs. Hence, gene reassortment of influenza A wild type (wt) viruses is performed with a highly egg adapted donor virus, A/Puerto Rico/8/1934 (PR8), to provide the high yield reassortant (HYR) viral ‘seeds’ for vaccine production. HYR must contain the hemagglutinin (HA) and neuraminidase (NA) genes of wt virus and one to six ‘internal’ genes from PR8. Most studies of influenza wt and HYRs have focused on the HA gene. The main objective of this study is the identification of the molecular signature in all eight gene segments of influenza A HYR candidate vaccine seeds associated with high growth in ovo. METHODOLOGY: The genomes of 14 wt parental viruses, 23 HYRs (5 H1N1; 2, 1976 H1N1-SOIV; 2, 2009 H1N1pdm; 2 H2N2 and 12 H3N2) and PR8 were sequenced using the high-throughput sequencing pipeline with big dye terminator chemistry. RESULTS: Silent and coding mutations were found in all internal genes derived from PR8 with the exception of the M gene. The M gene derived from PR8 was invariant in all 23 HYRs underlining the critical role of PR8 M in high yield phenotype. None of the wt virus derived internal genes had any silent change(s) except the PB1 gene in X-157. The highest number of recurrent silent and coding mutations was found in NS. With respect to the surface antigens, the majority of HYRs had coding mutations in HA; only 2 HYRs had coding mutations in NA. SIGNIFICANCE: In the era of application of reverse genetics to alter influenza A virus genomes, the mutations identified in the HYR gene segments associated with high growth in ovo may be of great practical benefit to modify PR8 and/or wt virus gene sequences for improved growth of vaccine ‘seed’ viruses.
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spelling pubmed-36791562013-06-17 Molecular Signature of High Yield (Growth) Influenza A Virus Reassortants Prepared as Candidate Vaccine Seeds Ramanunninair, Manojkumar Le, Jianhua Onodera, Shiroh Fulvini, Andrew A. Pokorny, Barbara A. Silverman, Jeanmarie Devis, Rene Arroyo, Jennifer M. He, Yu Boyne, Alex Bera, Jayati Halpin, Rebecca Hine, Erin Spiro, David J. Bucher, Doris PLoS One Research Article BACKGROUND: Human influenza virus isolates generally grow poorly in embryonated chicken eggs. Hence, gene reassortment of influenza A wild type (wt) viruses is performed with a highly egg adapted donor virus, A/Puerto Rico/8/1934 (PR8), to provide the high yield reassortant (HYR) viral ‘seeds’ for vaccine production. HYR must contain the hemagglutinin (HA) and neuraminidase (NA) genes of wt virus and one to six ‘internal’ genes from PR8. Most studies of influenza wt and HYRs have focused on the HA gene. The main objective of this study is the identification of the molecular signature in all eight gene segments of influenza A HYR candidate vaccine seeds associated with high growth in ovo. METHODOLOGY: The genomes of 14 wt parental viruses, 23 HYRs (5 H1N1; 2, 1976 H1N1-SOIV; 2, 2009 H1N1pdm; 2 H2N2 and 12 H3N2) and PR8 were sequenced using the high-throughput sequencing pipeline with big dye terminator chemistry. RESULTS: Silent and coding mutations were found in all internal genes derived from PR8 with the exception of the M gene. The M gene derived from PR8 was invariant in all 23 HYRs underlining the critical role of PR8 M in high yield phenotype. None of the wt virus derived internal genes had any silent change(s) except the PB1 gene in X-157. The highest number of recurrent silent and coding mutations was found in NS. With respect to the surface antigens, the majority of HYRs had coding mutations in HA; only 2 HYRs had coding mutations in NA. SIGNIFICANCE: In the era of application of reverse genetics to alter influenza A virus genomes, the mutations identified in the HYR gene segments associated with high growth in ovo may be of great practical benefit to modify PR8 and/or wt virus gene sequences for improved growth of vaccine ‘seed’ viruses. Public Library of Science 2013-06-11 /pmc/articles/PMC3679156/ /pubmed/23776579 http://dx.doi.org/10.1371/journal.pone.0065955 Text en © 2013 Ramanunninair 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
Ramanunninair, Manojkumar
Le, Jianhua
Onodera, Shiroh
Fulvini, Andrew A.
Pokorny, Barbara A.
Silverman, Jeanmarie
Devis, Rene
Arroyo, Jennifer M.
He, Yu
Boyne, Alex
Bera, Jayati
Halpin, Rebecca
Hine, Erin
Spiro, David J.
Bucher, Doris
Molecular Signature of High Yield (Growth) Influenza A Virus Reassortants Prepared as Candidate Vaccine Seeds
title Molecular Signature of High Yield (Growth) Influenza A Virus Reassortants Prepared as Candidate Vaccine Seeds
title_full Molecular Signature of High Yield (Growth) Influenza A Virus Reassortants Prepared as Candidate Vaccine Seeds
title_fullStr Molecular Signature of High Yield (Growth) Influenza A Virus Reassortants Prepared as Candidate Vaccine Seeds
title_full_unstemmed Molecular Signature of High Yield (Growth) Influenza A Virus Reassortants Prepared as Candidate Vaccine Seeds
title_short Molecular Signature of High Yield (Growth) Influenza A Virus Reassortants Prepared as Candidate Vaccine Seeds
title_sort molecular signature of high yield (growth) influenza a virus reassortants prepared as candidate vaccine seeds
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3679156/
https://www.ncbi.nlm.nih.gov/pubmed/23776579
http://dx.doi.org/10.1371/journal.pone.0065955
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