Mutations in the Endodomain of Sindbis Virus Glycoprotein E2 Define Sequences Critical for Virus Assembly
- 1 May 2006
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 80 (9) , 4458-68
- https://doi.org/10.1128/jvi.80.9.4458-4468.2006
Abstract
Envelopment of Sindbis virus at the plasma membrane is a multistep process in which an initial step is the association of the E2 protein via a cytoplasmic endodomain with the preassembled nucleocapsid. Sindbis virus is vectored in nature by blood-sucking insects and grows efficiently in a number of avian and mammalian vertebrate hosts. The assembly of Sindbis virus, therefore, must occur in two very different host cell environments. Mammalian cells contain cholesterol which insect membranes lack. This difference in membrane composition may be critical in determining what requirements are placed on the E2 tail for virus assembly. To examine the interaction between the E2 tail and the nucleocapsid in Sindbis virus, we have produced substitutions and deletions in a region of the E2 tail (E2 amino acids 408 to 415) that is initially integrated into the endoplasmic reticulum. This sequence was identified as being critical for nucleocapsid binding in an in vitro peptide protection assay. The effects of these mutations on virus assembly and function were determined in both vertebrate and invertebrate cells. Amino acid substitutions (at positions E2: 408, 410, 411, and 413) reduced infectious virus production in a position-dependent fashion but were not efficient in disrupting assembly in mammalian cells. Deletions in the E2 endodomain (Δ406-407, Δ409-411, and Δ414-417) resulted in the failure to assemble virions in mammalian cells. Electron microscopy of BHK cells transfected with these mutants revealed assembly of nucleocapsids that failed to attach to membranes. However, introduction of these deletion mutants into insect cells resulted in the assembly of virus-like particles but no assayable infectivity. These data help define protein interactions critical for virus assembly and suggest a fundamental difference between Sindbis virus assembly in mammalian and insect cells.Keywords
This publication has 41 references indexed in Scilit:
- Single Amino Acid Insertions at the Junction of the Sindbis Virus E2 Transmembrane Domain and Endodomain Disrupt Virus Envelopment and Alter InfectivityJournal of Virology, 2005
- Deletions in the Transmembrane Domain of a Sindbis Virus Glycoprotein Alter Virus Infectivity, Stability, and Host RangeJournal of Virology, 2003
- Characterization of Cholesterol-Free Insect Cells Infectible by Baculoviruses: Effects of Cholesterol on VSV Fusion and Infectivity and on Cytotoxicity Induced by Influenza M2 ProteinExperimental Cell Research, 1997
- Alphavirus Budding Is Dependent on the Interaction between the Nucleocapsid and Hydrophobic Amino Acids on the Cytoplasmic Domain of the E2 Envelope GlycoproteinVirology, 1997
- Aromatic interactions define the binding of the alphavirus spike to its nucleocapsidStructure, 1996
- Three-dimensional structure of a membrane-containing virus.Proceedings of the National Academy of Sciences, 1993
- Transient translocation of the cytoplasmic (endo) domain of a type I membrane glycoprotein into cellular membranes.The Journal of cell biology, 1993
- Site-directed mutations in sindbis virus E2 glycoprotein's cytoplasmic domain and the 6K protein lead to similar defects in virus assembly and buddingVirology, 1991
- Topological organization of Sindbis virus capsid protein in isolated nucleocapsidsVirus Research, 1987
- Lipids of cultured mosquito cells (Aedes albopictus): Comparison with cultured mammalian fibroblasts (BHK 21 cells)Biochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1973