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Production of Pseudotyped Particles to Study Highly Pathogenic Coronaviruses in a Biosafety Level 2 Setting
Published on: March 1, 2019
CD147/EMMPRIN acts as a functional entry receptor for measles virus on epithelial cells
Akira Watanabe1, Misako Yoneda, Fusako Ikeda
1International Research Center for Infectious Diseases, The Institute of Medical Science, The University of Tokyo, 4-6-1 Shirokanedai, Minato-ku, Tokyo 108-8639, Japan.
Abstract:
Measles is a highly contagious human disease caused by measles virus (MeV) and remains the leading cause of death in children, particularly in developing countries. Wild-type MeV preferentially infects lymphocytes by using signaling lymphocytic activation molecule (SLAM), whose expression is restricted to hematopoietic cells, as a receptor. MeV also infects other epithelial and neuronal cells that do not express SLAM and causes pneumonia and diarrhea and, sometimes, serious symptoms such as measles encephalitis and subacute sclerosing panencephalitis. The discrepancy between the tissue tropism of MeV and the distribution of SLAM-positive cells suggests that there are unknown receptors other than SLAM for MeV. Here we identified CD147/EMMPRIN (extracellular matrix metalloproteinase inducer), a transmembrane glycoprotein, which acts as a receptor for MeV on epithelial cells. Furthermore, we found the incorporation of cyclophilin B (CypB), a cellular ligand for CD147, in MeV virions, and showed that inhibition of CypB incorporation significantly attenuated SLAM-independent infection on epithelial cells, while it had no effect on SLAM-dependent infection. To date, MeV infection was considered to be triggered by binding of its hemagglutinin (H) protein and cellular receptors. Our present study, however, indicates that MeV infection also occurs via CD147 and virion-associated CypB, independently of MeV H. Since CD147 is expressed in a variety of cells, including epithelial and neuronal cells, this molecule possibly functions as an entry receptor for MeV in SLAM-negative cells. This is the first report among members of the Mononegavirales that CD147 is used as a virus entry receptor via incorporated CypB in the virions.
Insights
Measles virus (MeV) infects cells using CD147 and cyclophilin B (CypB) as a receptor, independent of its hemagglutinin protein. This discovery reveals a new pathway for measles infection in SLAM-negative cells.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Measles virus (MeV) causes a severe, contagious disease, particularly in children.
- MeV primarily infects lymphocytes via SLAM but also infects other cells lacking SLAM, suggesting alternative receptors.
- Understanding MeV tropism is crucial for controlling measles, a leading cause of childhood mortality.
Purpose of the Study:
- To identify unknown receptors for MeV in SLAM-negative cells.
- To elucidate the mechanism of MeV entry into epithelial and neuronal cells.
- To investigate novel pathways for MeV infection beyond SLAM-dependent entry.
Main Methods:
- Identified CD147 (EMMPRIN) as a novel MeV receptor on epithelial cells.
- Detected cyclophilin B (CypB) incorporated within MeV virions.
- Assessed the role of CypB incorporation in SLAM-independent MeV infection.
Main Results:
- CD147 acts as a functional receptor for MeV on SLAM-negative cells.
- Virion-associated CypB facilitates MeV entry independently of the MeV hemagglutinin (H) protein.
- Inhibiting CypB incorporation significantly reduced SLAM-independent MeV infection.
Conclusions:
- MeV utilizes CD147 and virion-associated CypB for entry into SLAM-negative cells.
- This represents a novel, SLAM- and H-independent mechanism of MeV infection.
- CD147 is identified as a virus entry receptor for the first time in Mononegavirales via incorporated CypB.
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