Related Experiment Videos
Requirements for budding of paramyxovirus simian virus 5 virus-like particles
Anthony P Schmitt1, George P Leser, David L Waning
1Howard Hughes Medical Institute, Northwestern University, Evanston, Illinois 60208-3500, USA.
Abstract:
Enveloped viruses are released from infected cells after coalescence of viral components at cellular membranes and budding of membranes to release particles. For some negative-strand RNA viruses (e.g., vesicular stomatitis virus and Ebola virus), the viral matrix (M) protein contains all of the information needed for budding, since virus-like particles (VLPs) are efficiently released from cells when the M protein is expressed from cDNA. To investigate the requirements for budding of the paramyxovirus simian virus 5 (SV5), its M protein was expressed in mammalian cells, and it was found that SV5 M protein alone could not induce vesicle budding and was not secreted from cells. Coexpression of M protein with the viral hemagglutinin-neuraminidase (HN) or fusion (F) glycoproteins also failed to result in significant VLP release. It was found that M protein in the form of VLPs was only secreted from cells, with an efficiency comparable to authentic virus budding, when M protein was coexpressed with one of the two glycoproteins, HN or F, together with the nucleocapsid (NP) protein. The VLPs appeared similar morphologically to authentic virions by electron microscopy. CsCl density gradient centrifugation indicated that almost all of the NP protein in the cells had assembled into nucleocapsid-like structures. Deletion of the F and HN cytoplasmic tails indicated an important role of these cytoplasmic tails in VLP budding. Furthermore, truncation of the HN cytoplasmic tail was found to be inhibitory toward budding, since it prevented coexpressed wild-type (wt) F protein from directing VLP budding. Conversely, truncation of the F protein cytoplasmic tail was not inhibitory and did not affect the ability of coexpressed wt HN protein to direct the budding of particles. Taken together, these data suggest that multiple viral components, including assembled nucleocapsids, have important roles in the paramyxovirus budding process.
Insights
Simian virus 5 (SV5) budding requires matrix (M) protein, nucleocapsid (NP) protein, and viral glycoproteins (HN or F). Viral glycoproteins
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Enveloped viruses bud from host cells through membrane coalescence.
- Matrix (M) proteins of some negative-strand RNA viruses contain budding information.
- Simian virus 5 (SV5) is a paramyxovirus with an unknown budding mechanism.
Purpose of the Study:
- To investigate the requirements for simian virus 5 (SV5) particle budding.
- To determine the role of SV5 matrix (M) protein in viral release.
- To identify viral components essential for paramyxovirus budding.
Main Methods:
- Expression of SV5 M protein and glycoproteins in mammalian cells.
- Analysis of virus-like particle (VLP) release via electron microscopy and CsCl density gradients.
- Site-directed mutagenesis of glycoprotein cytoplasmic tails.
Main Results:
- SV5 M protein alone did not induce VLP budding.
- VLP release required coexpression of M protein with nucleocapsid (NP) protein and either HN or F glycoprotein.
- Cytoplasmic tails of HN and F glycoproteins are crucial for efficient budding.
- Truncation of HN cytoplasmic tail inhibited budding, while F tail truncation did not.
Conclusions:
- Paramyxovirus budding is a complex process involving multiple viral components.
- Assembled nucleocapsids play a significant role in SV5 VLP release.
- Viral glycoprotein cytoplasmic tails are essential for efficient viral budding.