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Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Murine Polyomavirus Cell Surface Receptors Activate Distinct Signaling Pathways Required for Infection
Samantha D O'Hara1, Robert L Garcea2
1BioFrontiers Institute and the Department of Molecular, Cellular and Developmental Biology, University of Colorado, Boulder, Colorado, USA.
Abstract:
Virus binding to the cell surface triggers an array of host responses, including activation of specific signaling pathways that facilitate steps in virus entry. Using mouse polyomavirus (MuPyV), we identified host signaling pathways activated upon virus binding to mouse embryonic fibroblasts (MEFs). Pathways activated by MuPyV included the phosphatidylinositol 3-kinase (PI3K), FAK/SRC, and mitogen-activated protein kinase (MAPK) pathways. Gangliosides and α4-integrin are required receptors for MuPyV infection. MuPyV binding to both gangliosides and the α4-integrin receptors was required for activation of the PI3K pathway; however, either receptor interaction alone was sufficient for activation of the MAPK pathway. Using small-molecule inhibitors, we confirmed that the PI3K and FAK/SRC pathways were required for MuPyV infection, while the MAPK pathway was dispensable. Mechanistically, the PI3K pathway was required for MuPyV endocytosis, while the FAK/SRC pathway enabled trafficking of MuPyV along microtubules. Thus, MuPyV interactions with specific cell surface receptors facilitate activation of signaling pathways required for virus entry and trafficking. Understanding how different viruses manipulate cell signaling pathways through interactions with host receptors could lead to the identification of new therapeutic targets for viral infection.
Importance:
Virus binding to cell surface receptors initiates outside-in signaling that leads to virus endocytosis and subsequent virus trafficking. How different viruses manipulate cell signaling through interactions with host receptors remains unclear, and elucidation of the specific receptors and signaling pathways required for virus infection may lead to new therapeutic targets. In this study, we determined that gangliosides and α4-integrin mediate mouse polyomavirus (MuPyV) activation of host signaling pathways. Of these pathways, the PI3K and FAK/SRC pathways were required for MuPyV infection. Both the PI3K and FAK/SRC pathways have been implicated in human diseases, such as heart disease and cancer, and inhibitors directed against these pathways are currently being investigated as therapies. It is possible that these pathways play a role in human PyV infections and could be targeted to inhibit PyV infection in immunosuppressed patients.
Insights
Mouse polyomavirus (MuPyV) uses gangliosides and α4-integrin to activate PI3K and FAK/SRC pathways, essential for its entry and trafficking. The MAPK pathway is not required for MuPyV infection.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Virus entry into host cells involves complex interactions with cell surface receptors and activation of host signaling pathways.
- Understanding these host-virus interactions is crucial for developing antiviral therapies.
- Mouse polyomavirus (MuPyV) serves as a model to investigate these mechanisms.
Purpose of the Study:
- To identify host signaling pathways activated by MuPyV binding to mouse embryonic fibroblasts (MEFs).
- To determine the roles of specific cell surface receptors (gangliosides and α4-integrin) in MuPyV-induced signaling.
- To elucidate the functional requirement of identified signaling pathways (PI3K, FAK/SRC, MAPK) in MuPyV infection.
Main Methods:
- Utilized mouse polyomavirus (MuPyV) and mouse embryonic fibroblasts (MEFs).
- Investigated signaling pathway activation (PI3K, FAK/SRC, MAPK) upon virus binding.
- Employed small-molecule inhibitors to assess pathway requirements for infection.
- Analyzed receptor usage (gangliosides, α4-integrin) for pathway activation and infection.
Main Results:
- MuPyV activated PI3K, FAK/SRC, and MAPK pathways in MEFs.
- Gangliosides and α4-integrin are essential receptors for MuPyV infection.
- PI3K pathway activation required both receptors; MAPK activation required either.
- PI3K and FAK/SRC pathways were essential for MuPyV infection; MAPK was dispensable.
- PI3K mediated endocytosis, and FAK/SRC mediated microtubule trafficking of MuPyV.
Conclusions:
- MuPyV utilizes specific cell surface receptors to trigger host signaling pathways crucial for its entry and intracellular transport.
- The PI3K and FAK/SRC pathways are critical for MuPyV infection, mediating endocytosis and trafficking, respectively.
- Targeting these pathways could offer therapeutic strategies against MuPyV and potentially other polyomaviruses, especially in immunosuppressed individuals.
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