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.

Mbio
|November 3, 2016
PubMed

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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