Activity of the Mason-Pfizer Monkey Virus Fusion Protein Is Modulated by Single Amino Acids in the Cytoplasmic Tail
- 15 September 2005
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 79 (18) , 11569-79
- https://doi.org/10.1128/jvi.79.18.11569-11579.2005
Abstract
Mason-Pfizer monkey virus (M-PMV) encodes a transmembrane glycoprotein with a 38-amino-acid-long cytoplasmic tail. After the release of the immature virus, a viral protease-mediated cleavage of the cytoplasmic tail (CT) results in the loss of 17 amino acids from the carboxy terminus and renders the envelope protein fusion competent. To investigate the role of individual amino acid residues in the CT in fusion, a series of mutations was introduced, and the effects of these mutations on glycoprotein biosynthesis and fusion were examined. Most of the alanine-scanning mutations in the CT had little effect on fusion activity. However, four amino acid substitutions (threonine 4, lysine 7, glutamine 9, and isoleucine 10) resulted in substantially increased fusogenicity, while six (leucine 2, phenylalanine 5, isoleucine 13, lysine 16, proline 17, and glycine 31) resulted in much-reduced fusion. Interestingly, the bulk of these mutations are located upstream of the CT cleavage site in a region that has the potential to form a coiled-coil in the Env trimer. Substitutions at glutamine 9 and isoleucine 10 with alanine had the most dramatic positive effect and resulted in the formation of large syncytia. Taken together, these data demonstrate that individual residues within the cytoplasmic domain of M-PMV Env can modulate, in both a positive and negative manner, biological functions that are associated with the extracellular domains of the glycoprotein complex.Keywords
This publication has 53 references indexed in Scilit:
- Conformational change and protein–protein interactions of the fusion protein of Semliki Forest virusNature, 2004
- Variable Sensitivity to Substitutions in the N-Terminal Heptad Repeat of Mason-Pfizer Monkey Virus Transmembrane ProteinJournal of Virology, 2003
- A Tyrosine Motif in the Cytoplasmic Domain of Mason-Pfizer Monkey Virus Is Essential for the Incorporation of Glycoprotein into VirionsJournal of Virology, 2003
- Mutations in the Cytoplasmic Tail of Murine Leukemia Virus Envelope Protein Suppress Fusion Inhibition by R PeptideJournal of Virology, 2001
- Evidence That the Transition of HIV-1 Gp41 into a Six-Helix Bundle, Not the Bundle Configuration, Induces Membrane FusionThe Journal of cell biology, 2000
- Direct Evidence that the N-Terminal Heptad Repeat of Sendai Virus Fusion Protein Participates in Membrane FusionJournal of Molecular Biology, 1999
- Predicting Coiled Coils from Protein SequencesScience, 1991
- A General Model for the Transmembrane Proteins of HIV and Other RetrovirusesAIDS Research and Human Retroviruses, 1989
- Evidence for a coiled-coil structure in the spike proteins of coronavirusesJournal of Molecular Biology, 1987
- Detection of a fusion peptide sequence in the transmembrane protein of human immunodeficiency virusCell, 1987