tetano
Editor, Senior Moderator
Virology. 2016 Sep 8;498:226-239. doi: 10.1016/j.virol.2016.08.035. [Epub ahead of print]
[h=1]Evolutionary consequences of a decade of vaccination against subtype H6N2 influenza.[/h] Rauff D[SUP]1[/SUP], Strydom C[SUP]2[/SUP], Abolnik C[SUP]3[/SUP].
[h=3]Author information[/h]
[h=3]Abstract[/h] The evolutionary dynamics of chicken-origin H6N2 viruses isolated in South Africa between 2002 and 2013 were investigated. Sub-lineages I and II continued to co-circulate under vaccination pressure, but sub-lineage I, from which the inactivated vaccine was derived, displayed a markedly higher mutation rate and a three-fold increase in the emergence of potential antigenic sites on the globular head of HA compared to sub-lineage II. Immunological pressure culminated in a critical phenotypic change as four of the five isolates from 2012 to 2013 had lost the ability to haemagglutinate chicken erythrocytes, correlating with a pattern of predicted O-glycosylation sites at residues 134, 137 and 141 within the critical 130 loop of the receptor binding domain site. Coassortment of the HA, NA and M genes in the respective sub-lineages contrasted reassortment of the other internal protein genes, and the vaccine seed strain itself was the probable donor of segments to sub-lineage II field strains.
Copyright ? 2016 Elsevier Inc. All rights reserved.
[h=4]KEYWORDS:[/h] Avian influenza; Coassortment; Genetic drift; Glycosylation; H6N2; Reassortment; Vaccine
PMID: 27619928 DOI: 10.1016/j.virol.2016.08.035
[PubMed - as supplied by publisher]
[h=1]Evolutionary consequences of a decade of vaccination against subtype H6N2 influenza.[/h] Rauff D[SUP]1[/SUP], Strydom C[SUP]2[/SUP], Abolnik C[SUP]3[/SUP].
[h=3]Author information[/h]
[h=3]Abstract[/h] The evolutionary dynamics of chicken-origin H6N2 viruses isolated in South Africa between 2002 and 2013 were investigated. Sub-lineages I and II continued to co-circulate under vaccination pressure, but sub-lineage I, from which the inactivated vaccine was derived, displayed a markedly higher mutation rate and a three-fold increase in the emergence of potential antigenic sites on the globular head of HA compared to sub-lineage II. Immunological pressure culminated in a critical phenotypic change as four of the five isolates from 2012 to 2013 had lost the ability to haemagglutinate chicken erythrocytes, correlating with a pattern of predicted O-glycosylation sites at residues 134, 137 and 141 within the critical 130 loop of the receptor binding domain site. Coassortment of the HA, NA and M genes in the respective sub-lineages contrasted reassortment of the other internal protein genes, and the vaccine seed strain itself was the probable donor of segments to sub-lineage II field strains.
Copyright ? 2016 Elsevier Inc. All rights reserved.
[h=4]KEYWORDS:[/h] Avian influenza; Coassortment; Genetic drift; Glycosylation; H6N2; Reassortment; Vaccine
PMID: 27619928 DOI: 10.1016/j.virol.2016.08.035
[PubMed - as supplied by publisher]