Receptor specificity in human, avian, and equine H2 and H3 influenza virus isolates.

R J Connor1 Y Kawaoka R G Webster J C Paulson
Affiliations 1 institutions
  1. Department of Biological Chemistry, UCLA School of Medicine 90024-1737.

Abstract

The receptor specificity of 56 H2 and H3 influenza virus isolates from various animal species has been determined to test the relevance of receptor specificity to the ecology of influenza virus. The results show that the receptor specificity of both H2 and H3 isolates evaluated for sialic acid linkage specificity and inhibition of hemagglutination by horse serum correlates with the species of origin, as postulated earlier for H3 strains based on a limited survey of five human, three avian, and one equine strain. Elucidation of the amino acid sequence of several human H2 receptor variants and analysis of known sequences of H2 and H3 isolates revealed that receptor specificity varies in association with an amino acid change at residues 228 in addition to the change at residue 226 previously documented to affect receptor specificity of H3 but not H1 isolates. Residues 226 and 228 are leucine and serine in human isolates, which preferentially bind sialic acid alpha 2,6-galactose beta 1,4-N-acetyl glucosamine (SA alpha 2,6Gal), and glutamine and glycine in avian and equine isolates, which exhibit specificity for sialic acid alpha-2,3-galactose beta-1,3-N-acetyl galactosamine (SA alpha 2,3Gal). The results demonstrate that the correlation of receptor specificity and species of origin is maintained across both H2 and H3 influenza virus serotypes and provide compelling evidence that influenza virus hosts exert selective pressure to maintain the receptor specificity characteristics of strains isolated from that species.

Supporting text Virus Host Location
Amino Acid Sequence 128 Amino Acids 14 Animals 1948 Carbohydrate Sequence 5 Chick Embryo 20 Hemagglutinin Glycoproteins, Influenza Virus 180 Hemagglutinins, Viral 12 Influenza A virus 186 Molecular Sequence Data 160 Receptors, Virus 204 Species Specificity 84 Viral Envelope Proteins 60

Evidence records

2 total
Functional Mechanism
2 records · 2 evidence types
Evidence type
1 records
OVE11421
Key finding

Human H2 and H3 influenza virus isolates preferentially bind sialic acid α2,6-linked receptors, whereas avian and equine isolates preferentially bind sialic acid α2,3-linked receptors, corresponding to amino acid differences at HA residues 226 and 228.

Virus
Host
Location
Not specified
Supporting text

The receptor specificity of 56 H2 and H3 influenza virus isolates from various animal species has been determined to test the relevance of receptor specificity to the ecology of influenza virus. Residues 226 and 228 are leucine and serine in human isolates, which preferentially bind sialic acid alpha 2,6-galactose beta 1,4-N-acetyl glucosamine (SA alpha 2,6Gal), and glutamine and glycine in avian and equine isolates, which exhibit specificity for sialic acid alpha-2,3-galactose beta-1,3-N-acetyl galactosamine (SA alpha 2,3Gal).

Method
receptor binding assay | hemagglutination inhibition test | sequence analysis of HA residues 226 and 228
Receptors
sialic acid alpha 2,6-galactose beta 1,4-N-acetyl glucosamine (SA alpha 2,6Gal) | sialic acid alpha-2,3-galactose beta-1,3-N-acetyl galactosamine (SA alpha 2,3Gal)
Host factors
hemagglutinin residues 226 and 228
Evidence type
1 records
OVE11422
Key finding

Amino acid substitutions at hemagglutinin residues 226 and 228 in H2 and H3 influenza viruses determine receptor binding specificity consistent with host-driven molecular adaptation between human, avian, and equine isolates.

Virus
Host
Not specified
Location
Not specified
Supporting text

Receptor specificity varies in association with an amino acid change at residues 228 in addition to the change at residue 226 previously documented to affect receptor specificity of H3 but not H1 isolates. Residues 226 and 228 are leucine and serine in human isolates, which preferentially bind sialic acid α2,6-galactose β1,4-N-acetyl glucosamine (SA α2,6Gal), and glutamine and glycine in avian and equine isolates, which exhibit specificity for sialic acid α2,3-galactose β1,3-N-acetyl galactosamine (SA α2,3Gal).

Genes or proteins
hemagglutinin
Receptors
sialic acid α2,6-galactose β1,4-N-acetyl glucosamine (SA α2,6Gal) | sialic acid α2,3-galactose β1,3-N-acetyl galactosamine (SA α2,3Gal)
Mutations
residue 226 substitution | residue 228 substitution
Mechanism types
receptor binding | host-range expansion