In Vivo Generation and Characterization of a Soluble Form of the Semliki Forest Virus Fusion Protein
- 1 September 2001
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 75 (17) , 8329-39
- https://doi.org/10.1128/jvi.75.17.8329-8339.2001
Abstract
During infection of host cells, a number of enveloped animal viruses are known to produce soluble forms of viral membrane glycoproteins lacking the transmembrane domain. The roles of such soluble glycoproteins in viral life cycles are incompletely understood, but in several cases they are believed to modulate host immune response and viral pathogenesis. Semliki Forest virus (SFV) is an enveloped alphavirus that infects cells through low-pH-dependent fusion and buds from the plasma membrane. Fusion is mediated by the E1 subunit of the SFV spike protein. Previous studies described the in vivo generation of E1s, a truncated soluble form of E1, under conditions in which budding is inhibited in mammalian host cells. We have here examined the properties of E1s generation and the biological activity of E1s. E1s cleavage required spike protein transport out of the endoplasmic reticulum and was independent of virus infection. Cell surface E1 efficiently acted as a precursor for E1s. E1s generation was strongly pH dependent in BHK cells, with optimal cleavage at a pH of < or =7.0, conditions that inhibited the budding of SFV but not the budding of the rhabdovirus vesicular stomatitis virus. The pH dependence of E1s production and SFV budding was unaffected by the stability of the spike protein dimer but was a function of the host cell. Similar to the intact virus and in vitro-generated E1 ectodomain, treatment of E1s at low pH in the presence of target membranes triggered specific acid-dependent conformational changes. Thus, under a variety of conditions, SFV-infected cells can produce a soluble form of E1 that is biologically active.Keywords
This publication has 105 references indexed in Scilit:
- Brefeldin ACell, 1999
- Aromatic interactions define the binding of the alphavirus spike to its nucleocapsidStructure, 1996
- Budding of Rabies Virus Particles in the Absence of the Spike GlycoproteinCell, 1996
- Low pH induces swiveling of the glycoprotein heterodimers in the Semliki forest virus spike complexCell, 1995
- Fusion of Semliki Forest virus with cholesterol-containing liposomes at low pH: a specific requirement for sphingolipidsMolecular Membrane Biology, 1995
- Three-dimensional structure of a membrane-containing virus.Proceedings of the National Academy of Sciences, 1993
- Cholesterol is required in the exit pathway of Semliki Forest virus.The Journal of cell biology, 1993
- Intracellular maturation and transport of the SV5 type II glycoprotein hemagglutinin-neuraminidase: specific and transient association with GRP78-BiP in the endoplasmic reticulum and extensive internalization from the cell surface.The Journal of cell biology, 1989
- Fusion of Semliki Forest virus infected aedes albopictus cells at low pH is a fusion from withinArchiv für die gesamte Virusforschung, 1986
- pH-induced alterations in the fusogenic spike protein of Semliki Forest virus.The Journal of cell biology, 1985