Two Domains of the V Protein of Virulent Canine Distemper Virus Selectively Inhibit STAT1 and STAT2 Nuclear Import
- 1 July 2010
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 84 (13), 6328-6343
- https://doi.org/10.1128/jvi.01878-09
Abstract
Canine distemper virus (CDV) causes in dogs a severe systemic infection, with a high frequency of demyelinating encephalitis. Among the six genes transcribed by CDV, the P gene encodes the polymerase cofactor protein (P) as well as two additional nonstructural proteins, C and V; of these V was shown to act as a virulence factor. We investigated the molecular mechanisms by which the P gene products of the neurovirulent CDV A75/17 strain disrupt type I interferon (IFN-α/β)-induced signaling that results in the establishment of the antiviral state. Using recombinant knockout A75/17 viruses, the V protein was identified as the main antagonist of IFN-α/β-mediated signaling. Importantly, immunofluorescence analysis illustrated that the inhibition of IFN-α/β-mediated signaling correlated with impaired STAT1/STAT2 nuclear import, whereas the phosphorylation state of these proteins was not affected. Coimmunoprecipitation assays identified the N-terminal region of V (VNT) responsible for STAT1 targeting, which correlated with its ability to inhibit the activity of the IFN-α/β-mediated antiviral state. Conversely, while the C-terminal domain of V (VCT) could not function autonomously, when fused to VNT it optimally interacted with STAT2 and subsequently efficiently suppressed the IFN-α/β-mediated signaling pathway. The latter result was further supported by a single mutation at position 110 within the VNT domain of CDV V protein, resulting in a mutant that lost STAT1 binding while retaining a partial STAT2 association. Taken together, our results identified the CDV VNT and VCT as two essential modules that complement each other to interfere with the antiviral state induced by IFN-α/β-mediated signaling. Hence, our experiments reveal a novel mechanism of IFN-α/β evasion among the morbilliviruses.Keywords
This publication has 47 references indexed in Scilit:
- STAT2 Is a Primary Target for Measles Virus V Protein-Mediated Alpha/Beta Interferon Signaling InhibitionJournal of Virology, 2008
- Signal Peptide and Helical Bundle Domains of Virulent Canine Distemper Virus Fusion Protein Restrict FusogenicityJournal of Virology, 2007
- Targeting of the Sendai Virus C Protein to the Plasma Membrane via a Peptide-Only Membrane AnchorJournal of Virology, 2007
- Tyrosine 110 in the measles virus phosphoprotein is required to block STAT1 phosphorylationVirology, 2007
- Rinderpest Virus Blocks Type I and Type II Interferon Action: Role of Structural and Nonstructural ProteinsJournal of Virology, 2006
- Receptor (SLAM [CD150]) Recognition and the V Protein Sustain Swift Lymphocyte-Based Invasion of Mucosal Tissue and Lymphatic Organs by a MorbillivirusJournal of Virology, 2006
- Identification of the Nuclear Export Signal and STAT-Binding Domains of the Nipah Virus V Protein Reveals Mechanisms Underlying Interferon EvasionJournal of Virology, 2004
- Measles virus V protein blocks interferon (IFN)‐α/β but not IFN‐γ signaling by inhibiting STAT1 and STAT2 phosphorylationFEBS Letters, 2003
- 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
- Canine distemper virus clearance in chronic inflammatory demyelinationActa Neuropathologica, 1986