Identification of Hendra Virus G Glycoprotein Residues That Are Critical for Receptor Binding
- 1 June 2007
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 81 (11) , 5893-5901
- https://doi.org/10.1128/jvi.02022-06
Abstract
Hendra virus (HeV) is an emerging paramyxovirus capable of infecting and causing disease in a variety of mammalian species, including humans. The virus infects its host cells through the coordinated functions of its fusion (F) and attachment (G) glycoproteins, the latter of which is responsible for binding the virus receptors ephrinB2 and ephrinB3. In order to identify the receptor binding site, a panel of G glycoprotein constructs containing mutations was generated using an alanine-scanning mutagenesis strategy. Based on a predicted G structure, charged amino acids residing in regions that could be homologous to those in the measles virus H attachment glycoprotein known to be involved in its protein receptor interaction were targeted. Using a coprecipitation-based assay, seven single-amino-acid substitutions in HeV G were identified as having significantly impaired binding to both the ephrinB2 and ephrinB3 viral receptors: D257A, D260A, G439A, K443A, G449A, K465A, and D468A. The impairment of receptor interaction conferred a concomitant diminution in their abilities to promote membrane fusion when coexpressed with F. The G glycoprotein mutants were also recognized by three or more conformation-dependent monoclonal antibodies of a panel of five, were expressed on the cell surface, and retained their abilities to bind and coprecipitate F. Interestingly, some of these mutant G glycoproteins coprecipitated with F more efficiently than wild-type G. Taken together, these data provide strong biochemical and functional evidence that some of these residues could be part of a conformation-dependent, discontinuous, and overlapping ephrinB2 and -B3 binding domain within the HeV G glycoprotein.Keywords
This publication has 41 references indexed in Scilit:
- Evidence of a Potential Receptor-Binding Site on the Nipah Virus G Protein (NiV-G): Identification of Globular Head Residues with a Role in Fusion Promotion and Their Localization on an NiV-G Structural ModelJournal of Virology, 2006
- Inhibition of Receptor Binding Stabilizes Newcastle Disease Virus HN and F Protein-Containing ComplexesJournal of Virology, 2006
- Role of the ephrin and Eph receptor tyrosine kinase families in angiogenesis and development of the cardiovascular systemThe Journal of Pathology, 2006
- EphrinB2 is the entry receptor for Nipah virus, an emergent deadly paramyxovirusNature, 2005
- Diverse Roles of Eph Receptors and Ephrins in the Regulation of Cell Migration and Tissue AssemblyDevelopmental Cell, 2004
- Selectively Receptor-Blind Measles Viruses: Identification of Residues Necessary for SLAM- or CD46-Induced Fusion and Their Localization on a New Hemagglutinin Structural ModelJournal of Virology, 2004
- Identification of a Second Major Site for CD46 Binding in the Hemagglutinin Protein from a Laboratory Strain of Measles Virus (MV): Potential Consequences for Wild-Type MV InfectionJournal of Virology, 2002
- Strength of Envelope Protein Interaction Modulates Cytopathicity of Measles VirusJournal of Virology, 2002
- CD150 (SLAM) Is a Receptor for Measles Virus but Is Not Involved in Viral Contact-Mediated Proliferation InhibitionJournal of Virology, 2001
- Isolation of LERK-5: A ligand of the eph-related receptor tyrosine kinasesMolecular Immunology, 1995