A Single Amino Acid Substitution at Residue 218 of Hemagglutinin Improves the Growth of Influenza A(H7N9) Candidate Vaccine Viruses.

Xing Li1 Yamei Gao2 Zhiping Ye1
Affiliations 2 institutions
  1. Division of Viral Products, Center for Biologics Evaluation and Research, Silver Spring, Maryland, USA [email protected] [email protected].
  2. Division of Viral Products, Center for Biologics Evaluation and Research, Silver Spring, Maryland, USA.

Abstract

The potential avian influenza pandemic remains a threat to public health, as the avian-origin influenza A(H7N9) virus has caused more than 1,560 laboratory-confirmed human infections since 2013, with nearly 40% mortality. Development of low-pathogenic candidate vaccine viruses (CVVs) for vaccine production is essential for pandemic preparedness. However, the suboptimal growth of CVVs in mammalian cells and chicken eggs is often a challenge. By introducing a single adaptive substitution, G218E, into the hemagglutinin (HA), we generated reassortant A(H7N9)-G218E CVVs that were characterized by significantly enhanced growth in both cells and eggs. These G218E CVVs retained the original antigenicity, as determined by a hemagglutination inhibition assay, and effectively protected ferrets from lethal challenge with the highly pathogenic parental virus. We found that the suboptimal replication of the parental H7 CVVs was associated with impeded progeny virus release as a result of strong HA receptor binding relative to weak neuraminidase (NA) cleavage of receptors. In contrast, the G218E-mediated growth improvement was attributed to relatively balanced HA and NA functions, resulted from reduced HA binding to both human- and avian-type receptors, and thus facilitated NA-mediated virus release. Our findings revealed that a single amino acid mutation at residue 218 of the HA improved the growth of A(H7N9) influenza virus by balancing HA and NA functions, shedding light on an alternative approach for optimizing certain influenza CVVs.IMPORTANCE The circulating avian influenza A(H7N9) has caused recurrent epidemic waves with high mortality in China since 2013, in which the alarming fifth wave crossing 2016 and 2017 was highlighted by a large number of human infections and the emergence of highly pathogenic avian influenza (HPAI) A(H7N9) strains in human cases. We generated low-pathogenic reassortant CVVs derived from the emerging A(H7N9) with improved virus replication and protein yield in both MDCK cells and eggs by introducing a single substitution, G218E, into HA, which was associated with reducing HA receptor binding and subsequently balancing HA-NA functions. The in vitro and in vivo experiments demonstrated comparable antigenicity of the G218E CVVs with that of their wild-type (WT) counterparts, and both the WT and the G218E CVVs fully protected ferrets from parental HPAI virus challenge. With high yield traits and the anticipated antigenicity, the G218E CVVs should benefit preparedness against the threat of an A(H7N9) influenza pandemic.

Supporting text Virus Host Location
balancing HA and NA functions 1 influenza A(H7N9) virus 1 pandemic preparedness 5 pathogenesis in ferret 1 vaccine protein yield 1 virus replication 192 Amino Acid Substitution 81 Adaptation, Biological 25 Animals 1948 Chick Embryo 20 Disease Models, Animal 77 Dogs 176 Ferrets 79 Hemagglutinin Glycoproteins, Influenza Virus 180 Influenza A Virus, H7N9 Subtype 87 Influenza Vaccines 20 Madin Darby Canine Kidney Cells 36 Mutant Proteins 15 Orthomyxoviridae Infections 228 Reassortant Viruses 103 Survival Analysis 7 Vaccines, Attenuated 5 Virus Attachment 55 Virus Replication 191

Evidence records

2 total
Functional Mechanism
2 records · 2 evidence types
Evidence type
1 records
OVE3373
Key finding

A(H7N9)-G218E influenza virus shows reduced hemagglutinin binding to both human- and avian-type receptors, balancing HA and NA functions and improving viral growth.

Virus
Host
Location
Not specified
Supporting text

The G218E-mediated growth improvement was attributed to relatively balanced HA and NA functions, resulted from reduced HA binding to both human- and avian-type receptors, and thus facilitated NA-mediated virus release.

Method
receptor-binding analysis | growth improvement assay | HA and NA functional assays
Receptors
human-type receptors | avian-type receptors
Host factors
hemagglutinin (HA) | neuraminidase (NA)
Evidence type
1 records
OVE3371
Key finding

The G218E substitution in hemagglutinin (HA) of A(H7N9) influenza virus enhanced viral growth in cells and eggs by reducing HA receptor binding and balancing HA and NA functions.

Virus
Host
Not specified
Location
Not specified
Supporting text

By introducing a single adaptive substitution, G218E, into the hemagglutinin (HA), we generated reassortant A(H7N9)-G218E CVVs that were characterized by significantly enhanced growth in both cells and eggs. ... The G218E-mediated growth improvement was attributed to relatively balanced HA and NA functions, resulted from reduced HA binding to both human- and avian-type receptors, and thus facilitated NA-mediated virus release.

Genes or proteins
hemagglutinin | neuraminidase
Receptors
human-type receptor | avian-type receptor
Mutations
G218E
Mechanism types
receptor binding | replication adaptation