The Unique C Termini of Orthopoxvirus Gamma Interferon Binding Proteins Are Essential for Ligand Binding
Open Access
- 1 November 2006
- journal article
- research article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 80 (21) , 10675-10682
- https://doi.org/10.1128/jvi.01015-06
Abstract
The orthopoxviruses ectromelia virus (ECTV) and vaccinia virus (VACV) express secreted gamma interferon binding proteins (IFN-γBPs) with homology to the ligand binding domains of the host's IFN-γ receptor (IFN-γR1). Homology between these proteins is limited to the extracellular portions of the IFN-γR1 and the first ∼200 amino acids of the IFN-γBPs. The remaining 60 amino acids at the C termini of the IFN-γBPs contain a single cysteine residue shown to be important in covalent dimerization of the secreted proteins. The function of the remaining C-terminal domain (CTD) has remained elusive, yet this region is conserved within all orthopoxvirus IFN-γBPs. Using a series of C-terminal deletion constructs, we have determined that the CTD is essential for IFN-γ binding despite having no predicted homology to the IFN-γR1. Truncation of the ECTV IFN-γBP by more than two amino acid residues results in a complete loss of binding activity for both murine IFN-γ and human IFN-γ (hIFN-γ), as measured by surface plasmon resonance (SPR) and bioassay. Equivalent truncation of the VACV IFN-γBP resulted in comparable loss of hIFN-γ binding activity by SPR. Full-length IFN-γBPs were observed to form higher-ordered structures larger than the previously reported dimers. Mutants that were unable to bind IFN-γ with high affinity in SPR experiments failed to assemble into these higher-ordered structures and migrated as dimers. We conclude that the unique CTD of orthopoxvirus IFN-γBPs is important for the assembly of covalent homodimers as well as the assembly of higher-ordered structures essential for IFN-γ binding.Keywords
This publication has 30 references indexed in Scilit:
- A chemokine-binding domain in the tumor necrosis factor receptor from variola (smallpox) virusProceedings of the National Academy of Sciences, 2006
- Complete coding sequences of the rabbitpox virus genomeJournal of General Virology, 2005
- Interferons, interferon‐like cytokines, and their receptorsImmunological Reviews, 2004
- Interleukin-18 and glycosaminoglycan binding by a protein encoded by Variola virusJournal of General Virology, 2004
- Poxvirus Immunomodulatory Strategies: Current PerspectivesJournal of Virology, 2003
- Poxviruses and Immune EvasionAnnual Review of Immunology, 2003
- A minimal peptide substrate in biotin holoenzyme synthetase‐catalyzed biotinylationProtein Science, 1999
- Soluble interferon-γ receptors encoded by poxvirusesComparative Immunology, Microbiology and Infectious Diseases, 1996
- Crystal structure of a complex between interferon-γ and its soluble high-affinity receptorNature, 1995
- Prediction of the Secondary Structure of Proteins from their Amino Acid SequencePublished by Wiley ,1979