Receptor binding by an H7N9 influenza virus from humans.

Xiaoli Xiong1 Stephen R Martin Lesley F Haire Stephen A Wharton Rodney S Daniels Michael S Bennett John W McCauley Patrick J Collins Philip A Walker John J Skehel Steven J Gamblin
Affiliations 1 institutions
  1. MRC National Institute for Medical Research, The Ridgeway, Mill Hill, London NW71AA, UK.

Abstract

Of the 132 people known to have been infected with H7N9 influenza viruses in China, 37 died, and many were severely ill. Infection seems to have involved contact with infected poultry. We have examined the receptor-binding properties of this H7N9 virus and compared them with those of an avian H7N3 virus. We find that the human H7 virus has significantly higher affinity for α-2,6-linked sialic acid analogues ('human receptor') than avian H7 while retaining the strong binding to α-2,3-linked sialic acid analogues ('avian receptor') characteristic of avian viruses. The human H7 virus does not, therefore, have the preference for human versus avian receptors characteristic of pandemic viruses. X-ray crystallography of the receptor-binding protein, haemagglutinin (HA), in complex with receptor analogues indicates that both human and avian receptors adopt different conformations when bound to human H7 HA than they do when bound to avian H7 HA. Human receptor bound to human H7 HA exits the binding site in a different direction to that seen in complexes formed by HAs from pandemic viruses and from an aerosol-transmissible H5 mutant. The human-receptor-binding properties of human H7 probably arise from the introduction of two bulky hydrophobic residues by the substitutions Gln226Leu and Gly186Val. The former is shared with the 1957 H2 and 1968 H3 pandemic viruses and with the aerosol-transmissible H5 mutant. We conclude that the human H7 virus has acquired some of the receptor-binding characteristics that are typical of pandemic viruses, but its retained preference for avian receptor may restrict its further evolution towards a virus that could transmit efficiently between humans, perhaps by binding to avian-receptor-rich mucins in the human respiratory tract rather than to cellular receptors.

Supporting text Virus Host Location
Animals 1948 Binding Sites 89 Birds 212 Crystallography, X-Ray 32 Hemagglutinin Glycoproteins, Influenza Virus 180 Humans 1440 Influenza A virus 186 Influenza A Virus, H7N3 Subtype 4 Influenza, Human 286 Models, Molecular 99 Mucins 2 N-Acetylneuraminic Acid 25 Protein Binding 193 Protein Conformation 44 Receptors, Virus 204

Evidence records

3 total
Transmission Evidence
1 records · 1 evidence types
Evidence type
1 records
OVE1472
Key finding

Human infections with H7N9 influenza virus in China were associated with contact with infected poultry, indicating animal-to-human spillover.

Virus
Host
Location
Supporting text

Of the 132 people known to have been infected with H7N9 influenza viruses in China, 37 died, and many were severely ill. Infection seems to have involved contact with infected poultry.

Method
case exposure investigation
Study design
epidemiological correlation of human cases with animal exposure
Transmission direction
animal-to-human
Geographic raw
China
Country inferred
CHN
Functional Mechanism
2 records · 2 evidence types
Evidence type
1 records
OVE1470
Key finding

Human H7N9 influenza virus binds both α-2,6-linked (human-type) and α-2,3-linked (avian-type) sialic acid receptors, showing higher affinity for α-2,6-linked receptors compared with avian H7.

Virus
Host
Location
Not specified
Supporting text

We find that the human H7 virus has significantly higher affinity for α-2,6-linked sialic acid analogues ('human receptor') than avian H7 while retaining the strong binding to α-2,3-linked sialic acid analogues ('avian receptor') characteristic of avian viruses.

Method
receptor-binding assay | comparative binding analysis | X-ray crystallography
Receptors
α-2,6-linked sialic acid | α-2,3-linked sialic acid
Evidence type
1 records
OVE1471
Key finding

Amino acid substitutions Gln226Leu and Gly186Val in the HA protein of human H7N9 influenza virus introduce bulky hydrophobic residues that confer human receptor-binding properties similar to those of pandemic viruses.

Virus
Host
Not specified
Location
Not specified
Supporting text

The human-receptor-binding properties of human H7 probably arise from the introduction of two bulky hydrophobic residues by the substitutions Gln226Leu and Gly186Val.

Genes or proteins
HA
Receptors
human receptor | avian receptor | α-2,6-linked sialic acid | α-2,3-linked sialic acid
Mutations
Gln226Leu | Gly186Val
Mechanism types
receptor binding | host-range expansion