Acquisition of human-type receptor binding specificity by new H5N1 influenza virus sublineages during their emergence in birds in Egypt.

Yohei Watanabe1 Madiha S Ibrahim Hany F Ellakany Norihito Kawashita Rika Mizuike Hiroaki Hiramatsu Nogluk Sriwilaijaroen Tatsuya Takagi Yasuo Suzuki Kazuyoshi Ikuta
Affiliations 1 institutions
  1. Department of Virology, Research Institute for Microbial Diseases (BIKEN), Osaka University, Osaka, Japan. [email protected]

Abstract

Highly pathogenic avian influenza A virus subtype H5N1 is currently widespread in Asia, Europe, and Africa, with 60% mortality in humans. In particular, since 2009 Egypt has unexpectedly had the highest number of human cases of H5N1 virus infection, with more than 50% of the cases worldwide, but the basis for this high incidence has not been elucidated. A change in receptor binding affinity of the viral hemagglutinin (HA) from α2,3- to α2,6-linked sialic acid (SA) is thought to be necessary for H5N1 virus to become pandemic. In this study, we conducted a phylogenetic analysis of H5N1 viruses isolated between 2006 and 2009 in Egypt. The phylogenetic results showed that recent human isolates clustered disproportionally into several new H5 sublineages suggesting that their HAs have changed their receptor specificity. Using reverse genetics, we found that these H5 sublineages have acquired an enhanced binding affinity for α2,6 SA in combination with residual affinity for α2,3 SA, and identified the amino acid mutations that produced this new receptor specificity. Recombinant H5N1 viruses with a single mutation at HA residue 192 or a double mutation at HA residues 129 and 151 had increased attachment to and infectivity in the human lower respiratory tract but not in the larynx. These findings correlated with enhanced virulence of the mutant viruses in mice. Interestingly, these H5 viruses, with increased affinity to α2,6 SA, emerged during viral diversification in bird populations and subsequently spread to humans. Our findings suggested that emergence of new H5 sublineages with α2,6 SA specificity caused a subsequent increase in human H5N1 influenza virus infections in Egypt, and provided data for understanding the virus's pandemic potential.

Supporting text Virus Host Location
Phylogeny 805 Animals 1948 Cell Line 158 Cells, Cultured 26 Chickens 146 Disease Models, Animal 77 Ducks 81 Egypt 22 Female 289 Hemagglutinins, Viral 12 Humans 1440 Influenza A Virus, H5N1 Subtype 300 Influenza in Birds 341 Influenza, Human 286 Mice 253 Mice, Inbred BALB C 73 Mutation 209 N-Acetylneuraminic Acid 25 Pandemics 108 Prevalence 62 Protein Binding 193 Receptors, Virus 204 Respiratory Mucosa 10 Retrospective Studies 18

Evidence records

3 total
Functional Mechanism
3 records · 2 evidence types
Evidence type
2 records
OVE991
Key finding

H5N1 influenza viruses isolated in Egypt acquired enhanced binding to α2,6-linked sialic acid while retaining residual α2,3 binding, indicating human-type receptor adaptation.

Virus
Host
Not specified
Location
Not specified
Supporting text

Using reverse genetics, we found that these H5 sublineages have acquired an enhanced binding affinity for α2,6 SA in combination with residual affinity for α2,3 SA, and identified the amino acid mutations that produced this new receptor specificity.

Method
reverse genetics
Receptors
α2,6-linked sialic acid | α2,3-linked sialic acid
OVE993
Key finding

H5 viruses with increased α2,6-linked sialic acid affinity emerged in birds and subsequently spread to humans in Egypt.

Virus
Host
Location
Supporting text

Interestingly, these H5 viruses, with increased affinity to α2,6 SA, emerged during viral diversification in bird populations and subsequently spread to humans. Our findings suggested that emergence of new H5 sublineages with α2,6 SA specificity caused a subsequent increase in human H5N1 influenza virus infections in Egypt.

Method
phylogenetic analysis | reverse genetics | receptor binding assay | mutational analysis
Receptors
α2,6-linked sialic acid | human-type receptor
Evidence type
1 records
OVE992
Key finding

Mutations at HA residue 192 or at residues 129 and 151 in H5N1 influenza virus enhanced attachment to and infectivity of human lower respiratory tract tissues and correlated with increased virulence in mice.

Virus
Host
Not specified
Location
Not specified
Supporting text

Recombinant H5N1 viruses with a single mutation at HA residue 192 or a double mutation at HA residues 129 and 151 had increased attachment to and infectivity in the human lower respiratory tract but not in the larynx. These findings correlated with enhanced virulence of the mutant viruses in mice.

Genes or proteins
HA
Receptors
α2,6-linked sialic acid | α2,3-linked sialic acid
Mutations
HA residue 192 | HA residues 129 and 151
Mechanism types
receptor binding | tissue tropism | virulence adaptation | host-range expansion