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Published on: August 24, 2021
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.
Abstract:
Measles virus (MeV) is a member of the family Paramixoviridae that causes a highly contagious respiratory disease but has emerged as a promising oncolytic platform. Previous studies of MeV entry focused on the identification of cellular receptors. However, the endocytic and trafficking pathways utilized during MeV entry remain poorly described. The contribution of each endocytic pathway has been examined in cells that express the MeV receptors SLAM (signaling lymphocyte-activating molecule) and PVRL4 (poliovirus receptor-like 4) (nectin-4). Recombinant MeVs expressing either firefly luciferase or green fluorescent protein together with a variety of inhibitors were used. The results showed that MeV uptake was dynamin independent in the Vero.hPVRL4, Vero.hSLAM, and PVRL4-positive MCF7 breast cancer cell lines. However, MeV infection was blocked by 5-(N-ethyl-N-propyl)amiloride (EIPA), the hallmark inhibitor of macropinocytosis, as well as inhibitors of actin polymerization. By using phalloidin staining, MeV entry was shown to induce actin rearrangements and the formation of membrane ruffles accompanied by transient elevated fluid uptake. Small interfering RNA (siRNA) knockdown of p21-activated kinase 1 (PAK1) demonstrated that MeV enters both Vero.hPVRL4 and Vero.hSLAM cells in a PAK1-independent manner using a macropinocytosis-like pathway. In contrast, MeV entry into MCF7 human breast cancer cells relied upon Rac1 and its effector PAK1 through a PVRL4-mediated macropinocytosis pathway. MeV entry into DLD-1 colon and HTB-20 breast cancer cells also appeared to use the same pathway. Overall, these findings provide new insight into the life cycle of MeV, which could lead to therapies that block virus entry or methods that improve the uptake of MeV by cancer cells during oncolytic therapy.IMPORTANCE In the past decades, measles virus (MeV) has emerged as a promising oncolytic platform. Previous studies concerning MeV entry focused mainly on the identification of putative receptors for MeV. Nectin-4 (PVRL4) was recently identified as the epithelial cell receptor for MeV. However, the specific endocytic and trafficking pathways utilized during MeV infections are poorly documented. In this study, we demonstrated that MeV enters host cells via a dynamin-independent and actin-dependent endocytic pathway. Moreover, we show that MeV gains entry into MCF7, DLD-1, and HTB-20 cancer cells through a PVRL4-mediated macropinocytosis pathway and identified the typical cellular GTPase and kinase involved. Our findings provide new insight into the life cycle of MeV, which may lead to the development of therapies that block the entry of the virus into the host cell or alternatively promote the uptake of oncolytic MeV into cancer cells.
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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