Identification of the Nuclear Export Signal and STAT-Binding Domains of the Nipah Virus V Protein Reveals Mechanisms Underlying Interferon Evasion
Open Access
- 15 May 2004
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 78 (10) , 5358-5367
- https://doi.org/10.1128/jvi.78.10.5358-5367.2004
Abstract
The V proteins of Nipah virus and Hendra virus have been demonstrated to bind to cellular STAT1 and STAT2 proteins to form high-molecular-weight complexes that inhibit interferon (IFN)-induced antiviral transcription by preventing STAT nuclear accumulation. Analysis of the Nipah virus V protein has revealed a region between amino acids 174 and 192 that functions as a CRM1-dependent nuclear export signal (NES). This peptide is sufficient to complement an export-defective human immunodeficiency virus Rev protein, and deletion and substitution mutagenesis revealed that this peptide is necessary for both V protein shuttling and cytoplasmic retention of STAT1 and STAT2 proteins. However, the NES is not required for V-dependent IFN signaling inhibition. IFN signaling is blocked primarily by interaction between Nipah virus V residues 100 to 160 and STAT1 residues 509 to 712. Interaction with STAT2 requires a larger Nipah virus V segment between amino acids 100 and 300, but deletion of residues 230 to 237 greatly reduced STAT2 coprecipitation. Further, V protein interactions with cellular STAT1 is a prerequisite for STAT2 binding, and sequential immunoprecipitations demonstrate that V, STAT1, and STAT2 can form a tripartite complex. These findings characterize essential regions for Henipavirus V proteins that represent potential targets for therapeutic intervention.Keywords
This publication has 35 references indexed in Scilit:
- STAT3 Ubiquitylation and Degradation by Mumps Virus Suppress Cytokine and Oncogene SignalingJournal of Virology, 2003
- Measles virus V protein blocks interferon (IFN)‐α/β but not IFN‐γ signaling by inhibiting STAT1 and STAT2 phosphorylationFEBS Letters, 2003
- STAT2 Acts as a Host Range Determinant for Species-Specific Paramyxovirus Interferon Antagonism and Simian Virus 5 ReplicationJournal of Virology, 2002
- Dissociation Time from DNA Determines Transcriptional Function in a STAT1 Linker MutantPublished by Elsevier ,2002
- 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
- Nipah Virus: A Recently Emergent Deadly ParamyxovirusScience, 2000
- A STAT protein domain that determines DNA sequence recognition suggests a novel DNA-binding domain.Genes & Development, 1995