T160A mutation-induced deglycosylation at site 158 in hemagglutinin is a critical determinant of the dual receptor binding properties of clade 2.3.4.4 H5NX subtype avian influenza viruses.

Ruyi Gao1 Min Gu2,3 Kaituo Liu1 Qunhui Li1 Juan Li1 Liwei Shi1 Xiuli Li1 Xiaoquan Wang2,3 Jiao Hu2,3 Xiaowen Liu2,3 Shunlin Hu2,3 Sujuan Chen2,3 Daxin Peng2,4,5 Xinan Jiao2,4,5 Xiufan Liu2,4,6
Affiliations 6 institutions
  1. College of Veterinary Medicine, Yangzhou University, Yangzhou, Jiangsu 225009, China.
  2. College of Veterinary Medicine, Yangzhou University, Yangzhou, Jiangsu 225009, China
  3. Jiangsu Key Laboratory of Zoonosis, Yangzhou University, Yangzhou, Jiangsu 225009, China.
  4. Jiangsu Key Laboratory of Zoonosis, Yangzhou University, Yangzhou, Jiangsu 225009, China
  5. Jiangsu Co-innovation Center for Prevention and Control of Important Animal Infectious Diseases and Zoonosis, Yangzhou, Jiangsu 225009, China.
  6. Jiangsu Co-innovation Center for Prevention and Control of Important Animal Infectious Diseases and Zoonosis, Yangzhou, Jiangsu 225009, China. Electronic address: [email protected].

Abstract

Most clade 2.3.4.4 H5NX subtype avian influenza viruses possess a T160A amino acid substitution in the hemagglutinin (HA) protein that has been shown to affect the receptor binding properties of a clade 2.3.4 H5N1 virus. However, the effect of this single site mutation on the HA backbone of clade 2.3.4.4 H5NX viruses remains unclear. In this study, two H5N6 field isolates possessing HA-160A with dual α-2,3 and α-2,6 receptor binding properties (Y6 virus) and HA-160T with α-2,3 receptor binding affinity (HX virus), respectively, were selected to generate HA mutants containing all of the internal genes from A/PR8/H1N1 virus for comparative investigation. We found that the Y6-P-160A and RHX-P-160A viruses each with 160A in the HA resulting in loss of glycosylation at site 158 exhibited binding to the two receptor types, whereas the RY6-P-160T and HX-P-160T viruses each with 160T in the HA displayed selective binding to α-2,3 receptors only. In addition, differences were noted in the replication of these four H5N6 recombinants in avian and mammalian cells, as well as in their pathogenicity in mice. The contribution of deglycosylation at site 158 to the acquisition of human-like receptors was further verified in H5N2, H5N5 and H5N8 reassortants. Therefore, we conclude that the lack of glycosylation at site 158 induced by the T160A mutation in HA is a critical determinant for the dual receptor binding properties of clade 2.3.4.4 H5NX viruses. This new insight may be helpful in assessing the pandemic potential of novel H5 isolates.

Supporting text Virus Host Location
158 1 Clade 2.3.4.4 3 Glycosylation 23 H5NX 2 Receptor 18 Mutation 209 Animals 1948 Birds 212 Glycosylation 22 Hemagglutinin Glycoproteins, Influenza Virus 180 Hemagglutinins 24 Influenza A virus 186 Influenza in Birds 341 Mice 253 Orthomyxoviridae Infections 228 Phylogeny 805 Protein Binding 193 Reassortant Viruses 103 Receptors, Virus 204 Reverse Genetics 11

Evidence records

3 total
Experimental Infection
1 records · 1 evidence types
Evidence type
1 records
OVE2921
Key finding

Four recombinant H5N6 avian influenza viruses exhibited differing levels of pathogenicity when tested in mice.

Virus
Host
Location
Not specified
Supporting text

Differences were noted in the replication of these four H5N6 recombinants in avian and mammalian cells, as well as in their pathogenicity in mice.

Method
experimental infection of mice | comparison of pathogenicity among recombinant viruses
Experimental system
mouse infection model
Functional Mechanism
2 records · 2 evidence types
Evidence type
1 records
OVE2919
Key finding

Loss of glycosylation at HA site 158 induced by the T160A mutation enables clade 2.3.4.4 H5NX subtype avian influenza viruses to bind both α‑2,3 and α‑2,6 receptors.

Virus
Host
Not specified
Location
Not specified
Supporting text

Therefore, we conclude that the lack of glycosylation at site 158 induced by the T160A mutation in HA is a critical determinant for the dual receptor binding properties of clade 2.3.4.4 H5NX viruses.

Method
receptor binding assay
Receptors
α-2,3 receptor | α-2,6 receptor
Host factors
T160A mutation | deglycosylation at site 158
Evidence type
1 records
OVE2920
Key finding

Loss of glycosylation at HA site 158 caused by the T160A substitution enables dual α‑2,3 and α‑2,6 receptor binding and acquisition of human‑like receptor binding properties in clade 2.3.4.4 H5NX influenza viruses.

Virus
Host
Not specified
Location
Not specified
Supporting text

Therefore, we conclude that the lack of glycosylation at site 158 induced by the T160A mutation in HA is a critical determinant for the dual receptor binding properties of clade 2.3.4.4 H5NX viruses.

Genes or proteins
hemagglutinin (HA)
Receptors
α‑2,3 linked sialic acid | α‑2,6 linked sialic acid
Mutations
T160A
Mechanism types
receptor binding | receptor usage | host-range expansion