Degradation of STAT1 and STAT2 by the V Proteins of Simian Virus 5 and Human Parainfluenza Virus Type 2, Respectively: Consequences for Virus Replication in the Presence of Alpha/Beta and Gamma Interferons
- 1 March 2002
- journal article
- research article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 76 (5) , 2159-2167
- https://doi.org/10.1128/jvi.76.5.2159-2167.2002
Abstract
Human cell lines were isolated that express the V protein of either simian virus 5 (SV5) or human parainfluenza virus type 2 (hPIV2); the cell lines were termed 2f/SV5-V and 2f/PIV2-V, respectively. STAT1 was not detectable in 2f/SV5-V cells, and the cells failed to signal in response to either alpha/beta interferons (IFN-α and IFN-β, or IFN-α/β) or gamma interferon (IFN-γ). In contrast, STAT2 was absent from 2f/PIV2-V cells, and IFN-α/β but not IFN-γ signaling was blocked in these cells. Treatment of both 2f/SV5-V and 2f/PIV2-V cells with a proteasome inhibitor allowed the respective STAT levels to accumulate at rates similar to those seen in 2fTGH cells, indicating that the V proteins target the STATs for proteasomal degradation. Infection with SV5 can lead to a complete loss of both phosphorylated and nonphosphorylated forms of STAT1 by 6 h postinfection. Since the turnover of STAT1 in uninfected cells is longer than 24 h, we conclude that degradation of STAT1 is the main mechanism by which SV5 blocks interferon (IFN) signaling. Pretreatment of 2fTGH cells with IFN-α severely inhibited both SV5 and hPIV2 protein synthesis. However, and in marked contrast, pretreatment of 2fTGH cells with IFN-γ had little obvious effect on SV5 protein synthesis but did significantly reduce the replication of hPIV2. Pretreament with IFN-α or IFN-γ did not induce an antiviral state in 2f/SV5-V cells, indicating either that the induction of an antiviral state is completely dependent on STAT signaling or that the V protein interferes with other, STAT-independent cell signaling pathways that may be induced by IFNs. Even though SV5 blocked IFN signaling, the addition of exogenous IFN-α to the culture medium of 2fTGH cells 12 h after a low-multiplicity infection with SV5 significantly reduced the subsequent cell-to-cell spread of virus. The significance of the results in terms of the strategy that these viruses have evolved to circumvent the IFN response is discussed.Keywords
This publication has 48 references indexed in Scilit:
- High Resistance of Human Parainfluenza Type 2 Virus Protein-Expressing Cells to the Antiviral and Anti-Cell Proliferative Activities of Alpha/Beta Interferons: Cysteine-Rich V-Specific Domain Is Required for High Resistance to the InterferonsJournal of Virology, 2001
- The virus battles: IFN induction of the antiviral state and mechanisms of viral evasionPublished by Elsevier ,2001
- C Terminal CYS-RICH Region of Mumps Virus Structural V Protein Correlates with Block of Interferon α and γ Signal Transduction Pathway through Decrease of STAT 1-αBiochemical and Biophysical Research Communications, 2001
- Single Amino Acid Substitution in the V Protein of Simian Virus 5 Differentiates Its Ability To Block Interferon Signaling in Human and Murine CellsJournal of Virology, 2001
- Knockout of the Sendai virus C gene eliminates the viral ability to prevent the interferon‐α/β‐mediated responsesFEBS Letters, 1999
- Poor induction of interferon-induced 2′,5′-oligoadenylate synthetase (2–5 AS) in cells persistently infected with mumps virus is caused by decrease of STAT-1αArchiv für die gesamte Virusforschung, 1998
- Sequence Analysis of the HN Gene of Parainfluenza Virus Type 2Journal of General Virology, 1990
- Comparison between Parainfluenza Virus Type 2 and Simian Virus 5: Monoclonal Antibodies Reveal Major Antigenic DifferencesJournal of General Virology, 1988
- Isolation and Characterization of Monoclonal Antibodies to Simian Virus 5 and Their Use in Revealing Antigenic Differences between Human, Canine and Simian IsolatesJournal of General Virology, 1987
- Intranuclear Localization of Herpes Simplex Virus Immediate-Early and Delayed-Early Proteins: Evidence that ICP 4 Is Associated with Progeny Virus DNAJournal of General Virology, 1986