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An In vitro Model to Study Immune Responses of Human Peripheral Blood Mononuclear Cells to Human Respiratory Syncytial Virus Infection
Published on: December 11, 2013
The actin-binding protein palladin associates with the respiratory syncytial virus matrix protein
Shadi Shahriari1, Reena Ghildyal1
1Biomedical Research Cluster, Faculty of Science and Technology, University of Canberra, Canberra, Australia.
Abstract:
The respiratory syncytial virus (RSV) matrix (M) protein plays an important role in infection as it can interact with viral components as well as the host cell actin microfilaments. The M-actin interaction may play a role in facilitating the transportation of virion components to the apical surface, where RSV is released. We show that M protein's association with actin is facilitated by palladin, an actin-binding protein. Cells were infected with RSV or transfected to express full-length M as a green fluorescent protein (GFP)-tagged protein, followed by removal of nuclear and cytosolic proteins to enrich for cytoskeleton and its associated proteins. M protein was present in inclusion bodies tethered to microfilaments in infected cells. In transfected cells, GFP-M was presented close to microfilaments, without association, suggesting the possible involvement of an additional protein in this interaction. As palladin can bind to proteins that also bind actin, we investigated its interaction with M. Cells were co-transfected to express GFP-M and palladin as an mCherry fluorescent-tagged protein, followed by cytoskeleton enrichment. M and palladin were observed to colocalize towards microfilaments, suggesting that palladin is involved in the M-actin interaction. In co-immunoprecipitation studies, M was found to associate with two isoforms of palladin, of 140 and 37 kDa. Interestingly, siRNA downregulation of palladin resulted in reduced titer of released RSV, while cell associated RSV titer increased, suggesting a role for palladin in virus release. Together, our data show that the M-actin interaction mediated by palladin is important for RSV budding and release.IMPORTANCERespiratory syncytial virus is responsible for severe lower respiratory tract infections in young children under 5 years old, the elderly, and the immunosuppressed. The interaction of the respiratory syncytial virus matrix protein with the host actin cytoskeleton is important in infection but has not been investigated in depth. In this study, we show that the respiratory syncytial virus matrix protein associates with actin microfilaments and the actin-binding protein palladin, suggesting a role for palladin in respiratory syncytial virus release. This study provides new insight into the role of the actin cytoskeleton in respiratory syncytial virus infection, a key host-RSV interaction in assembly. Understanding the mechanism by which the RSV M protein and actin interact will ultimately provide a basis for the development of therapeutics targeted at RSV infections.
Insights
Respiratory syncytial virus (RSV) matrix protein interacts with host actin cytoskeleton via palladin. This interaction is crucial for efficient RSV budding and release, offering new therapeutic targets.
Area of Science:
- Virology
- Cell Biology
- Biochemistry
Background:
- Respiratory syncytial virus (RSV) causes severe respiratory infections.
- The RSV matrix (M) protein's interaction with host actin is vital for infection but poorly understood.
- Understanding host-pathogen interactions is key to developing antiviral strategies.
Purpose of the Study:
- To investigate the role of the actin-binding protein palladin in the interaction between RSV M protein and host actin.
- To elucidate the mechanism by which palladin facilitates RSV M protein-actin association.
- To determine the impact of palladin on RSV replication and release.
Main Methods:
- RSV infection and M protein expression in cells.
- Confocal microscopy to visualize protein colocalization.
- Cytoskeleton enrichment and co-immunoprecipitation assays.
- siRNA-mediated palladin knockdown.
Main Results:
- RSV M protein colocalizes with actin microfilaments and palladin.
- Palladin directly associates with RSV M protein.
- Palladin knockdown reduces released RSV titers while increasing cell-associated RSV.
- M protein is found in inclusion bodies tethered to microfilaments.
Conclusions:
- Palladin mediates the interaction between RSV M protein and the host actin cytoskeleton.
- Palladin plays a critical role in the budding and release of RSV virions.
- Targeting the M protein-palladin-actin interaction could be a novel therapeutic approach for RSV infections.
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