Oligomerization of Ebola Virus VP40 Is Essential for Particle Morphogenesis and Regulation of Viral Transcription
Open Access
- 15 July 2010
- journal article
- research article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 84 (14) , 7053-7063
- https://doi.org/10.1128/jvi.00737-10
Abstract
The morphogenesis and budding of virus particles represent an important stage in the life cycle of viruses. For Ebola virus, this process is driven by its major matrix protein, VP40. Like the matrix proteins of many other nonsegmented, negative-strand RNA viruses, VP40 has been demonstrated to oligomerize and to occur in at least two distinct oligomeric states: hexamers and octamers, which are composed of antiparallel dimers. While it has been shown that VP40 oligomers are essential for the viral life cycle, their function is completely unknown. Here we have identified two amino acids essential for oligomerization of VP40, the mutation of which blocked virus-like particle production. Consistent with this observation, oligomerization-deficient VP40 also showed impaired intracellular transport to budding sites and reduced binding to cellular membranes. However, other biological functions, such as the interaction of VP40 with the nucleoprotein, NP, remained undisturbed. Furthermore, both wild-type VP40 and oligomerization-deficient VP40 were found to negatively regulate viral genome replication, a novel function of VP40, which we have recently reported. Interestingly, while wild-type VP40 was also able to negatively regulate viral genome transcription, oligomerization-deficient VP40 was no longer able to fulfill this function, indicating that regulation of viral replication and transcription by VP40 are mechanistically distinct processes. These data indicate that VP40 oligomerization not only is a prerequisite for intracellular transport of VP40 and efficient membrane binding, and as a consequence virion morphogenesis, but also plays a critical role in the regulation of viral transcription by VP40.Keywords
This publication has 51 references indexed in Scilit:
- Conserved Motifs within Ebola and Marburg Virus VP40 Proteins Are Important for Stability, Localization, and Subsequent Budding of Virus-Like ParticlesJournal of Virology, 2010
- The Matrix Protein of Measles Virus Regulates Viral RNA Synthesis and Assembly by Interacting with the Nucleocapsid ProteinJournal of Virology, 2009
- The Ebola virus ribonucleoprotein complex: A novel VP30–L interaction identifiedVirus Research, 2008
- Role for Amino Acids 212 KLR 214 of Ebola Virus VP40 in Assembly and BuddingJournal of Virology, 2007
- Mapping of the VP40-Binding Regions of the Nucleoprotein of Ebola VirusJournal of Virology, 2007
- Crystal structure of the C-terminal domain of Ebola virus VP30 reveals a role in transcription and nucleocapsid associationProceedings of the National Academy of Sciences, 2007
- Mutation of YMYL in the Nipah Virus Matrix Protein Abrogates Budding and Alters Subcellular LocalizationJournal of Virology, 2006
- Infection of Naïve Target Cells with Virus-Like Particles: Implications for the Function of Ebola Virus VP24Journal of Virology, 2006
- Ebola Virus VP24 Binds Karyopherin α1 and Blocks STAT1 Nuclear AccumulationJournal of Virology, 2006
- SWISS‐MODEL and the Swiss‐Pdb Viewer: An environment for comparative protein modelingElectrophoresis, 1997