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Generation, Amplification, and Titration of Recombinant Respiratory Syncytial Viruses
Published on: April 4, 2019
Multivesicular bodies as a platform for formation of the Marburg virus envelope
Larissa Kolesnikova1, Beate Berghöfer, Sandra Bamberg
1Institut für Virologie der Philipps-Universität Marburg, Robert-Koch-Strasse 17, D-35037 Marburg, Germany.
Abstract:
The Marburg virus (MARV) envelope consists of a lipid membrane and two major proteins, the matrix protein VP40 and the glycoprotein GP. Both proteins use different intracellular transport pathways: GP utilizes the exocytotic pathway, while VP40 is transported through the retrograde late endosomal pathway. It is currently unknown where the proteins combine to form the viral envelope. In the present study, we identified the intracellular site where the two major envelope proteins of MARV come together as peripheral multivesicular bodies (MVBs). Upon coexpression with VP40, GP is redistributed from the trans-Golgi network into the VP40-containing MVBs. Ultrastructural analysis of MVBs suggested that they provide the platform for the formation of membrane structures that bud as virus-like particles from the cell surface. The virus-like particles contain both VP40 and GP. Single expression of GP also resulted in the release of particles, which are round or pleomorphic. Single expression of VP40 led to the release of filamentous structures that closely resemble viral particles and contain traces of endosomal marker proteins. This finding indicated a central role of VP40 in the formation of the filamentous structure of MARV particles, which is similar to the role of the related Ebola virusVP40. In MARV-infected cells, VP40 and GP are colocalized in peripheral MVBs as well. Moreover, intracellular budding of progeny virions into MVBs was frequently detected. Taken together, these results demonstrate an intracellular intersection between GP and VP40 pathways and suggest a crucial role of the late endosomal compartment for the formation of the viral envelope.
Insights
Marburg virus (MARV) envelope proteins VP40 and glycoprotein (GP) meet at multivesicular bodies (MVBs). This late endosomal compartment is crucial for forming MARV particles and its viral envelope.
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- The Marburg virus (MARV) envelope comprises a lipid membrane and two key proteins: matrix protein VP40 and glycoprotein GP.
- MARV's GP protein uses the exocytotic pathway, while VP40 is transported via the retrograde late endosomal pathway.
- The precise intracellular location where these proteins assemble to form the viral envelope remains undetermined.
Purpose of the Study:
- To identify the intracellular site of Marburg virus (MARV) envelope protein assembly.
- To elucidate the roles of VP40 and GP in viral particle formation and transport.
- To investigate the involvement of the late endosomal pathway in MARV envelope biogenesis.
Main Methods:
- Coexpression of MARV VP40 and GP proteins in cell culture systems.
- Ultrastructural analysis of peripheral multivesicular bodies (MVBs) using electron microscopy.
- Colocalization studies of VP40, GP, and endosomal markers in MARV-infected cells and during virus-like particle production.
Main Results:
- Peripheral multivesicular bodies (MVBs) were identified as the site where MARV VP40 and GP converge.
- Upon coexpression, GP redistributed to VP40-containing MVBs, facilitating the formation of virus-like particles (VLPs).
- VP40 alone formed filamentous structures resembling MARV particles, containing endosomal markers, while GP alone formed pleomorphic particles.
Conclusions:
- MARV VP40 and GP pathways intersect within peripheral MVBs, a late endosomal compartment.
- MVBs serve as a platform for the assembly of MARV envelope proteins and the formation of viral particles.
- The late endosomal pathway plays a critical role in the biogenesis of the Marburg virus envelope.
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