Mutation of the Second Sialic Acid-Binding Site, Resulting in Reduced Neuraminidase Activity, Preceded the Emergence of H7N9 Influenza A Virus.

Meiling Dai1 Ryan McBride2 Jos C F M Dortmans1 Wenjie Peng2 Mark J G Bakkers1 Raoul J de Groot1 Frank J M van Kuppeveld1 James C Paulson2 Erik de Vries1 Cornelis A M de Haan3
Affiliations 3 institutions
  1. Virology Division, Department of Infectious Diseases and Immunology, Faculty of Veterinary Medicine, Utrecht University, Utrecht, the Netherlands.
  2. Departments of Cell and Molecular Biology, Chemical Physiology, and Immunology and Microbial Science, Scripps Research Institute, La Jolla, California, USA.
  3. Virology Division, Department of Infectious Diseases and Immunology, Faculty of Veterinary Medicine, Utrecht University, Utrecht, the Netherlands [email protected].

Abstract

The emergence of the novel influenza A virus (IAV) H7N9 since 2013 has caused concerns about the ability of the virus to spread between humans. Analysis of the receptor-binding properties of the H7 protein of a human isolate revealed modestly increased binding to α2,6 sialosides and reduced, but still dominant, binding to α2,3-linked sialic acids (SIAs) compared to a closely related avian H7N9 virus from 2008. Here, we show that the corresponding N9 neuraminidases (NAs) display equal enzymatic activities on a soluble monovalent substrate and similar substrate specificities on a glycan array. In contrast, solid-phase activity and binding assays demonstrated reduced specific activity and decreased binding of the novel N9 protein. Mutational analysis showed that these differences resulted from substitution T401A in the 2nd SIA-binding site, indicating that substrate binding via this site enhances NA catalytic activity. Substitution T401A in the novel N9 protein appears to functionally mimic the substitutions that are found in the 2nd SIA-binding site of NA proteins of avian-derived IAVs that became human pandemic viruses. Our phylogenetic analyses show that substitution T401A occurred prior to substitutions in hemagglutinin (HA), causing the altered receptor-binding properties mentioned above. Hence, in contrast to the widespread assumption that such changes in NA are obtained only after acquisition of functional changes in HA, our data indicate that mutations in the 2nd SIA-binding site may have enabled and even driven the acquisition of altered HA receptor-binding properties and may have contributed to the spread of the novel H7N9 viruses.IMPORTANCE Novel H7N9 IAVs continue to cause human infections and pose an ongoing public health threat. Here, we show that their N9 proteins display reduced binding to and lower enzymatic activity against multivalent substrates, resulting from mutation of the 2nd sialic acid-binding site. This mutation preceded and may have driven the selection of substitutions in H7 that modify H7 receptor-binding properties. Of note, all animal IAVs that managed to cross the host species barrier and became human viruses carry mutated 2nd sialic acid-binding sites. Screening of animal IAVs to monitor their potential to cross the host species barrier should therefore focus not only on the HA protein, but also on the functional properties of NA.

Supporting text Virus Host Location
H7N9 27 hemagglutinin 31 influenza A virus 227 neuraminidase 64 sialic acid 12 Amino Acid Substitution 81 Binding Sites 89 Hemagglutinin Glycoproteins, Influenza Virus 180 Humans 1440 Influenza A Virus, H7N9 Subtype 87 Influenza, Human 286 Neuraminidase 62 Phylogeny 805 Protein Binding 193 Receptors, Virus 204 Sialic Acids 29

Evidence records

2 total
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE2530
Key finding

The hemagglutinin of a human H7N9 influenza A isolate bound more strongly to α2,6-linked sialic acid receptors and less strongly, though still predominantly, to α2,3-linked sialic acids compared with an avian H7N9 virus from 2008.

Virus
Host
Location
Not specified
Supporting text

Analysis of the receptor-binding properties of the H7 protein of a human isolate revealed modestly increased binding to α2,6 sialosides and reduced, but still dominant, binding to α2,3-linked sialic acids (SIAs) compared to a closely related avian H7N9 virus from 2008.

Method
receptor-binding assay | comparative binding analysis
Receptors
α2,6 sialosides | α2,3-linked sialic acids
Genomic Evolution
1 records · 1 evidence types
Evidence type
1 records
OVE2532
Key finding

Phylogenetic analysis showed that the neuraminidase substitution T401A in H7N9 influenza A virus occurred prior to hemagglutinin mutations that altered receptor-binding properties.

Virus
Host
Not specified
Location
Not specified
Supporting text

Our phylogenetic analyses show that substitution T401A occurred prior to substitutions in hemagglutinin (HA), causing the altered receptor-binding properties mentioned above. Hence, in contrast to the widespread assumption that such changes in NA are obtained only after acquisition of functional changes in HA, our data indicate that mutations in the 2nd SIA-binding site may have enabled and even driven the acquisition of altered HA receptor-binding properties and may have contributed to the spread of the novel H7N9 viruses.

Genes or proteins
neuraminidase | hemagglutinin
Analysis methods
phylogenetic analysis