Measles Virus Enters Breast and Colon Cancer Cell Lines through a PVRL4-Mediated Macropinocytosis Pathway

Sebastien Delpeut1,2, Gary Sisson1, Karen M Black1

  • 1Department of Microbiology and Immunology, Dalhousie University, Halifax, Nova Scotia, Canada.

Journal of Virology
|March 3, 2017
PubMed

Insights

Measles virus (MeV) uses macropinocytosis, an actin-dependent pathway, for cell entry. This discovery offers new strategies for oncolytic MeV therapies targeting cancer cells.

Area of Science:

  • Virology
  • Cell Biology
  • Oncolytic Therapy

Background:

  • Measles virus (MeV) is a promising oncolytic platform, but its entry mechanisms are not fully understood.
  • Previous research focused on MeV receptors, leaving endocytic pathways poorly described.
  • Nectin-4 (PVRL4) is identified as the epithelial cell receptor for MeV.

Purpose of the Study:

  • To investigate the specific endocytic and trafficking pathways utilized during MeV entry.
  • To determine the role of cellular receptors SLAM and PVRL4 in MeV uptake.
  • To explore MeV entry mechanisms in various cancer cell lines for oncolytic applications.

Main Methods:

  • Utilized recombinant MeVs expressing luciferase or GFP in cell lines expressing MeV receptors.
  • Employed dynamin-independent assays and inhibitors of macropinocytosis (EIPA) and actin polymerization.
  • Conducted siRNA knockdown of p21-activated kinase 1 (PAK1) and phalloidin staining for actin dynamics.

Main Results:

  • MeV entry was dynamin-independent but actin-dependent, involving actin rearrangements and membrane ruffles.
  • Macropinocytosis inhibitors blocked MeV infection, indicating its crucial role.
  • MeV entry into cancer cells (MCF7, DLD-1, HTB-20) relied on PVRL4, Rac1, and PAK1 via macropinocytosis.

Conclusions:

  • MeV utilizes a macropinocytosis-like pathway for entry into host cells, dependent on actin dynamics.
  • PVRL4-mediated macropinocytosis is essential for MeV entry into specific cancer cells.
  • Findings provide insights for developing therapies to block MeV entry or enhance oncolytic efficacy.

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