Requirement for a non-specific glycoprotein cytoplasmic domain sequence to drive efficient budding of vesicular stomatitis virus
Open Access
- 2 March 1998
- journal article
- research article
- Published by Springer Nature in The EMBO Journal
- Vol. 17 (5) , 1289-1296
- https://doi.org/10.1093/emboj/17.5.1289
Abstract
The cytoplasmic domains of viral glycoproteins are often involved in specific interactions with internal viral components. These interactions can concentrate glycoproteins at virus budding sites and drive efficient virus budding, or can determine virion morphology. To investigate the role of the vesicular stomatitis virus (VSV) glycoprotein (G) cytoplasmic and transmembrane domains in budding, we recovered recombinant VSVs expressing chimeric G proteins with the transmembrane and cytoplasmic domains derived from the human CD4 protein. These unrelated foreign sequences were capable of supporting efficient VSV budding. Further analysis of G protein cytoplasmic domain deletion mutants showed that a cytoplasmic domain of only 1 amino acid did not drive efficient budding, whereas 9 amino acids did. Additional studies in agreement with the CD4‐chimera experiments indicated the requirement for a short cytoplasmic domain on VSV G without the requirement for a specific sequence in that domain. We propose a model for VSV budding in which a relatively non‐specific interaction of a cytoplasmic domain with a pocket or groove in the viral nucleocapsid or matrix proteins generates a glycoprotein array that promotes viral budding.This publication has 23 references indexed in Scilit:
- Construction of a Novel Virus That Targets HIV-1-Infected Cells and Controls HIV-1 InfectionCell, 1997
- Aromatic interactions define the binding of the alphavirus spike to its nucleocapsidStructure, 1996
- Identification of a protein binding site on the surface of the alphavirus nucleocapsid and its implication in virus assemblyStructure, 1996
- Budding of Rabies Virus Particles in the Absence of the Spike GlycoproteinCell, 1996
- Stimulation of Heterologous Protein Degradation by the Vpu Protein of HIV-1 Requires the Transmembrane and Cytoplasmic Domains of CD4Virology, 1994
- Analysis of endoproteolytic cleavage and intracellular transport of human immunodeficiency virus type 1 envelope glycoproteins using mutant CD4 molecules bearing the transmembrane endoplasmic reticulum retention signalJournal of General Virology, 1993
- The role of envelope proteins in hepatitis B virus assembly.Proceedings of the National Academy of Sciences, 1991
- Assembly of Animal Viruses at Cellular MembranesAnnual Review of Microbiology, 1988
- [18] Staining of proteins on gels: Comparisons of dyes and proceduresPublished by Elsevier ,1983
- The interaction of antibody with the major surface glycoprotein of vesicular stornatitis virus II. Monoclonal antibodies to nonneutralizing and cross-reactive epitopes of Indiana and New Jersey serotypesVirology, 1982