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Isolation of Viral Replication Compartment-enriched Sub-nuclear Fractions from Adenovirus-infected Normal Human Cells
Published on: November 12, 2015
Cellular COPII proteins are involved in production of the vesicles that form the poliovirus replication complex
R C Rust1, L Landmann, R Gosert
1Institutes for Medical Microbiology, Biocenter, University of Basel, CH-4000 Basel, Switzerland.
Abstract:
Poliovirus (PV) replicates its genome in association with membranous vesicles in the cytoplasm of infected cells. To elucidate the origin and mode of formation of PV vesicles, immunofluorescence labeling with antibodies against the viral vesicle marker proteins 2B and 2BC, as well as cellular markers of the endoplasmic reticulum (ER), anterograde transport vesicles, and the Golgi complex, was performed in BT7-H cells. Optical sections obtained by confocal laser scanning microscopy were subjected to a deconvolution process to enhance resolution and signal-to-noise ratio and to allow for a three-dimensional representation of labeled membrane structures. The mode of formation of the PV vesicles was, on morphological grounds, similar to the formation of anterograde membrane traffic vesicles in uninfected cells. ER-resident membrane markers were excluded from both types of vesicles, and the COPII components Sec13 and Sec31 were both found to be colocalized on the vesicular surface, indicating the presence of a functional COPII coat. PV vesicle formation during early time points of infection did not involve the Golgi complex. The expression of PV protein 2BC or the entire P2 and P3 genomic region led to the production of vesicles carrying a COPII coat and showing the same mode of formation as vesicles produced after PV infection. These results indicate that PV vesicles are formed at the ER by the cellular COPII budding mechanism and thus are homologous to the vesicles of the anterograde membrane transport pathway.
Insights
Poliovirus (PV) infection hijacks cellular machinery to form replication vesicles. These vesicles originate from the endoplasmic reticulum (ER) using the cell
Area of Science:
- Cell biology
- Virology
- Molecular biology
Background:
- Poliovirus (PV) replicates within cytoplasmic vesicles.
- The origin and formation mechanism of these PV-induced vesicles remain unclear.
Purpose of the Study:
- To investigate the origin and formation process of poliovirus replication vesicles.
- To determine the relationship between PV vesicles and cellular membrane trafficking pathways.
Main Methods:
- Immunofluorescence labeling of viral proteins (2B, 2BC) and cellular markers (ER, Golgi, COPII components).
- Confocal laser scanning microscopy with deconvolution for 3D reconstruction.
- Analysis of vesicle formation in infected cells and cells expressing PV proteins.
Main Results:
- PV vesicles share formation characteristics with anterograde transport vesicles.
- COPII coat components (Sec13, Sec31) are present on PV vesicles.
- PV vesicle formation occurs at the ER and does not involve the Golgi complex during early infection.
- Expression of PV proteins (2BC, P2-P3) induces COPII-coated vesicles with similar formation modes.
Conclusions:
- Poliovirus vesicles are formed at the endoplasmic reticulum (ER) via the host cell's COPII budding mechanism.
- PV vesicle formation is homologous to the cellular anterograde membrane transport pathway.
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