Cell Cycle Status Affects Coxsackievirus Replication, Persistence, and Reactivation In Vitro
- 1 May 2002
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 76 (9) , 4430-4440
- https://doi.org/10.1128/jvi.76.9.4430-4440.2002
Abstract
Enteroviral persistence has been implicated in the pathogenesis of several chronic human diseases, including dilated cardiomyopathy, insulin-dependent diabetes mellitus, and chronic inflammatory myopathy. However, these viruses are considered highly cytolytic, and it is unclear what mechanisms might permit their long-term survival. Here, we describe the generation of a recombinant coxsackievirus B3 (CVB3) expressing the enhanced green fluorescent protein (eGFP), which we used to mark and track infected cells in vitro. Following exposure of quiescent tissue culture cells to either wild-type CVB3 or eGFP-CVB3, virus production was very limited but increased dramatically after cells were permitted to divide. Studies with cell cycle inhibitors revealed that cells arrested at the G1or G1/S phase could express high levels of viral polyprotein and produced abundant infectious virus. In contrast, both protein expression and virus yield were markedly reduced in quiescent cells (i.e., cells in G0) and in cells blocked at the G2/M phase. Following infection with eGFP-CVB3, quiescent cells retained viral RNA for several days in the absence of infectious virus production. Furthermore, RNA extracted from nonproductive quiescent cells was infectious when transfected into dividing cells, indicating that CVB3 appears to be capable of establishing a latent infection in G0cells, at least in tissue culture. Finally, wounding of infected quiescent cells resulted in viral protein expression limited to cells in and adjacent to the lesion. We suggest that (i) cell cycle status determines the distribution of CVB3 during acute infection and (ii) the persistence of CVB3 in vivo may rely on infection of quiescent (G0) cells incapable of supporting viral replication; a subsequent change in the cell cycle status may lead to virus reactivation, triggering chronic viral and/or immune-mediated pathology in the host.Keywords
This publication has 88 references indexed in Scilit:
- Translation Initiation of the Insulin-like Growth Factor I Receptor mRNA Is Mediated by an Internal Ribosome Entry SiteJournal of Biological Chemistry, 2001
- Reovirus-Induced G 2 /M Cell Cycle Arrest Requires ς1s and Occurs in the Absence of ApoptosisJournal of Virology, 2000
- The Role of B Lymphocytes in Coxsackievirus B3 InfectionThe American Journal of Pathology, 1999
- Transgenic expression of replication-restricted enteroviral genomes in heart muscle induces defective excitation-contraction coupling and dilated cardiomyopathy.Journal of Clinical Investigation, 1998
- There is evidence for persistent enterovirus infections in chronic medical conditions in humansReviews in Medical Virology, 1994
- There is no evidence for persistent enterovirus infections in chronic medical conditions in humansReviews in Medical Virology, 1994
- HIV-1 entry into quiescent primary lymphocytes: Molecular analysis reveals a labile, latent viral structureCell, 1990
- Cell Cycle Position and Expression of Encephalomyocarditis Virus in Mouse Embryo FibroblastsJournal of General Virology, 1985
- Severe arrhythmias in Coxsackievirus B3 myopericarditis.Archives of Disease in Childhood, 1978
- Virus Infection as a Function of the Host Cell Life Cycle: Replication of Poliovirus RNAJournal of General Virology, 1972