Literature DB >> 26951657

Prediction, dynamics, and visualization of antigenic phenotypes of seasonal influenza viruses.

Richard A Neher1, Trevor Bedford2, Rodney S Daniels3, Colin A Russell4, Boris I Shraiman5.   

Abstract

Human seasonal influenza viruses evolve rapidly, enabling the virus population to evade immunity and reinfect previously infected individuals. Antigenic properties are largely determined by the surface glycoprotein hemagglutinin (HA), and amino acid substitutions at exposed epitope sites in HA mediate loss of recognition by antibodies. Here, we show that antigenic differences measured through serological assay data are well described by a sum of antigenic changes along the path connecting viruses in a phylogenetic tree. This mapping onto the tree allows prediction of antigenicity from HA sequence data alone. The mapping can further be used to make predictions about the makeup of the future A(H3N2) seasonal influenza virus population, and we compare predictions between models with serological and sequence data. To make timely model output readily available, we developed a web browser-based application that visualizes antigenic data on a continuously updated phylogeny.

Entities:  

Keywords:  antigenic distance; evolution; phylogenetic tree

Mesh:

Substances:

Year:  2016        PMID: 26951657      PMCID: PMC4812706          DOI: 10.1073/pnas.1525578113

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  25 in total

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Journal:  Science       Date:  2012-08-09       Impact factor: 47.728

5.  Predicting evolution from the shape of genealogical trees.

Authors:  Richard A Neher; Colin A Russell; Boris I Shraiman
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7.  Structural basis for the divergent evolution of influenza B virus hemagglutinin.

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2.  Population effect of influenza vaccination under co-circulation of non-vaccine variants and the case for a bivalent A/H3N2 vaccine component.

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Review 6.  Real-Time Analysis and Visualization of Pathogen Sequence Data.

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7.  Phylodynamic theory of persistence, extinction and speciation of rapidly adapting pathogens.

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8.  Estimating Transmission Parameters for Respiratory Syncytial Virus and Predicting the Impact of Maternal and Pediatric Vaccination.

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Authors:  M Linster; E J A Schrauwen; S van der Vliet; D F Burke; P Lexmond; T M Bestebroer; D J Smith; S Herfst; B F Koel; R A M Fouchier
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