A single residue substitution in the receptor-binding domain of H5N1 hemagglutinin is critical for packaging into pseudotyped lentiviral particles.

Dong-Jiang Tang1 Yuen-Man Lam Yu-Lam Siu Chi-Hong Lam Shui-Ling Chu J S Malik Peiris Philippe Buchy Béatrice Nal Roberto Bruzzone
Affiliations 1 institutions
  1. HKU-Pasteur Research Centre, The University of Hong Kong, Hong Kong, Special Administrative Region, People's Republic of China. [email protected]

Abstract

Serological studies for influenza infection and vaccine response often involve microneutralization and hemagglutination inhibition assays to evaluate neutralizing antibodies against human and avian influenza viruses, including H5N1. We have previously characterized lentiviral particles pseudotyped with H5-HA (H5pp) and validated an H5pp-based assay as a safe alternative for high-throughput serological studies in BSL-2 facilities. Here we show that H5-HAs from different clades do not always give rise to efficient production of H5pp and the underlying mechanisms are addressed. We have carried out mutational analysis to delineate the molecular determinants responsible for efficient packaging of HA from A/Cambodia/40808/2005 (H5Cam) and A/Anhui/1/2005 (H5Anh) into H5pp. Our results demonstrate that a single A134V mutation in the 130-loop of the receptor binding domain is sufficient to render H5Anh the ability to generate H5Anh-pp efficiently, whereas the reverse V134A mutation greatly hampers production of H5Cam-pp. Although protein expression in total cell lysates is similar for H5Anh and H5Cam, cell surface expression of H5Cam is detected at a significantly higher level than that of H5Anh. We further demonstrate by several independent lines of evidence that the behaviour of H5Anh can be explained by a stronger binding to sialic acid receptors implicating residue 134. We have identified a single A134V mutation as the molecular determinant in H5-HA for efficient incorporation into H5pp envelope and delineated the underlying mechanism. The reduced binding to sialic acid receptors as a result of the A134V mutation not only exerts a critical influence in pseudotyping efficiency of H5-HA, but has also an impact at the whole virus level. Because A134V substitution has been reported as a naturally occurring mutation in human host, our results may have implications for the understanding of human host adaptation of avian influenza H5N1 viruses.

Supporting text Virus Host Location
Animals 1948 Birds 212 Cell Membrane 4 CHO Cells 4 Cricetinae 41 DNA Mutational Analysis 4 Dogs 176 HEK293 Cells 61 Hemagglutinin Glycoproteins, Influenza Virus 180 Humans 1440 Influenza A Virus, H5N1 Subtype 300 Influenza in Birds 341 Influenza Vaccines 20 Lentivirus 2 Madin Darby Canine Kidney Cells 36 Mutation 209 Protein Binding 193 Protein Structure, Tertiary 29 Sialic Acids 29

Evidence records

1 total
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE1306
Key finding

A single A134V substitution in the receptor-binding domain of H5N1 hemagglutinin alters receptor binding and enhances pseudotyping efficiency, linking this residue to human host adaptation.

Virus
Host
Not specified
Location
Not specified
Supporting text

Our results demonstrate that a single A134V mutation in the 130-loop of the receptor binding domain is sufficient to render H5Anh the ability to generate H5Anh-pp efficiently, ... Because A134V substitution has been reported as a naturally occurring mutation in human host, our results may have implications for the understanding of human host adaptation of avian influenza H5N1 viruses.

Genes or proteins
hemagglutinin | HA
Receptors
sialic acid receptors
Mutations
A134V
Mechanism types
receptor binding | receptor usage | host-range expansion