Differential Effects of Actin Cytoskeleton Dynamics on Equine Infectious Anemia Virus Particle Production
Open Access
- 15 January 2004
- journal article
- research article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 78 (2) , 882-891
- https://doi.org/10.1128/jvi.78.2.882-891.2004
Abstract
Retrovirus assembly and budding involve a highly dynamic and concerted interaction of viral and cellular proteins. Previous studies have shown that retroviral Gag proteins interact with actin filaments, but the significance of these interactions remains to be defined. Using equine infectious anemia virus (EIAV), we now demonstrate differential effects of cellular actin dynamics at distinct stages of retrovirus assembly and budding. First, virion production was reduced when EIAV-infected cells were treated with phallacidin, a cell-permeable reagent that stabilizes actin filaments by slowing down their depolymerization. Confocal microscopy confirmed that the inhibition of EIAV production correlated temporally over several days with the incorporation dynamics of phallacidin into the actin cytoskeleton. Although the overall structure of the actin cytoskeleton and expression of viral protein appeared to be unaffected, phallacidin treatment dramatically reduced the amount of full-length Gag protein associated with the actin cytoskeleton. These data suggest that an association of full-length Gag proteins with de novo actin filaments might contribute to Gag assembly and budding. On the other hand, virion production was enhanced when EIAV-infected cells were incubated briefly (2 h) with the actin-depolymerizing drugs cytochalasin D and latrunculin B. Interestingly, the enhanced virion production induced by cytochalasin D required a functional late (L) domain, either the EIAV YPDL L-domain or the proline-rich L domains derived from human immunodeficiency virus type 1 or Rous sarcoma virus, respectively. Thus, depolymerization of actin filaments may be a common function mediated by retrovirus L domains during late stages of viral budding. Taken together, these observations indicate that dynamic actin polymerization and depolymerization may be associated with different stages of viral production.Keywords
This publication has 87 references indexed in Scilit:
- Cell Penetration and Trafficking of PolyomavirusJournal of Virology, 2003
- Potential roles of cellular proteins in HIV‐1Reviews in Medical Virology, 2002
- Functional Replacement and Positional Dependence of Homologous and Heterologous L Domains in Equine Infectious Anemia Virus ReplicationJournal of Virology, 2002
- HIV Type 1 Gag and Nucleocapsid Proteins: Cytoskeletal Localization and Effects on Cell MotilityAIDS Research and Human Retroviruses, 2001
- Functional Roles of Equine Infectious Anemia Virus Gag p9 in Viral Budding and InfectionJournal of Virology, 2001
- A potential immune escape mechanism by melanoma cells through the activation of chemokine-induced T cell deathCurrent Biology, 2001
- Effects of cytoskeletal disrupting agents on mouse mammary tumor virus replicationVirus Research, 1987
- The toxic peptides from Amanita mushroomsInternational Journal of Peptide and Protein Research, 1983
- In vivo staining of cytoskeletal actin by autointernalization of nontoxic concentrations of nitrobenzoxadiazole-phallacidin.The Journal of cell biology, 1981
- Is there a role for actin in virus budding?The Journal of cell biology, 1977