Mutations in haemagglutinin that affect receptor binding and pH stability increase replication of a PR8 influenza virus with H5 HA in the upper respiratory tract of ferrets and may contribute to transmissibility.

Holly Shelton1 Kim L Roberts1 Eleonora Molesti2 Nigel Temperton2 Wendy S Barclay1
Affiliations 2 institutions
  1. Division of Infectious Diseases, Imperial College London, St Mary's Campus, London, UK.
  2. Viral Pseudotype Unit, School of Pharmacy, University of Kent, Anson Building, Chatham Maritime ME4 4TB, UK.

Abstract

The H5N1 influenza A viruses have circulated widely in the avian population for 10 years with only sporadic infection of humans observed and no sustained human to human transmission. Vaccination against potential pandemic strains is one strategy in planning for future influenza pandemics; however, the success of live attenuated vaccines for H5N1 has been limited, due to poor replication in the human upper respiratory tract (URT). Mutations that increase the ability of H5N1 viruses to replicate in the URT will aid immunogenicity of these vaccines and provide information about humanizing adaptations in H5N1 strains that may signal transmissibility. As well as mediating receptor interactions, the haemagglutinin (HA) protein of influenza facilitates fusion of the viral membrane and genome entry into the host cell; this process is pH dependent. We have shown in this study that the pH at which a panel of avian influenza HA proteins, including H5, mediate fusion is higher than that for human influenza HA proteins, and that mutations in the H5 HA can reduce the pH of fusion. Coupled with receptor switching mutations, increasing the pH stability of the H5 HA resulted in increased viral shedding of H5N1 from the nasal cavity of ferrets and contact transmission to a co-housed animal. Ferret serum antibodies induced by infection with any of the mutated H5 HA viruses neutralized HA pseudotyped lentiviruses bearing homologous or heterologous H5 HAs, suggesting that this strategy to increase nasal replication of a vaccine virus would not compromise vaccine efficacy.

Supporting text Virus Host Location
Virus Replication 191 Animals 1948 Disease Models, Animal 77 Female 289 Ferrets 79 Hemagglutinin Glycoproteins, Influenza Virus 180 Humans 1440 Hydrogen-Ion Concentration 12 Influenza A Virus, H5N1 Subtype 300 Influenza, Human 286 Mutation 209 Protein Binding 193 Protein Stability 12 Receptors, Virus 204 Respiratory System 21 Virus Shedding 51 hemagglutinin, avian influenza A virus 26

Evidence records

2 total
Experimental Infection
1 records · 1 evidence types
Evidence type
1 records
OVE1382
Key finding

Mutated H5N1 influenza virus with increased HA pH stability transmitted by contact between co-housed ferrets in a controlled experiment.

Virus
Host
Location
Not specified
Supporting text

Increasing the pH stability of the H5 HA resulted in increased viral shedding of H5N1 from the nasal cavity of ferrets and contact transmission to a co-housed animal.

Method
co-housing transmission experiment | viral shedding quantification | serological testing
Experimental system
co-housed ferret contact transmission model
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE1380
Key finding

Mutations in the H5 haemagglutinin of an H5N1 influenza A virus altered receptor binding and increased pH stability, enhancing replication of a PR8 influenza virus bearing H5 HA in ferret upper respiratory tract and contributing to transmissibility.

Virus
Host
Not specified
Location
Not specified
Supporting text

Mutations in haemagglutinin that affect receptor binding and pH stability increase replication of a PR8 influenza virus with H5 HA in the upper respiratory tract of ferrets and may contribute to transmissibility.

Genes or proteins
haemagglutinin | HA
Receptors
influenza virus receptors (sialic acid-linked)
Mutations
receptor binding mutations | pH stability mutations
Mechanism types
receptor binding | host entry | replication adaptation | transmission fitness