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Updated: May 27, 2026

Determination of Biofilm Initiation on Virus-infected Cells by Bacteria and Fungi
Published on: July 6, 2016
Adherens junction protein nectin-4 is the epithelial receptor for measles virus
Michael D Mühlebach1, Mathieu Mateo, Patrick L Sinn
1Division of Medical Biotechnology, Paul-Ehrlich-Institut, 63225 Langen, Germany.
Abstract:
Measles virus is an aerosol-transmitted virus that affects more than 10 million children each year and accounts for approximately 120,000 deaths. Although it was long believed to replicate in the respiratory epithelium before disseminating, it was recently shown to infect initially macrophages and dendritic cells of the airways using signalling lymphocytic activation molecule family member 1 (SLAMF1; also called CD150) as a receptor. These cells then cross the respiratory epithelium and transport the infection to lymphatic organs where measles virus replicates vigorously. How and where the virus crosses back into the airways has remained unknown. On the basis of functional analyses of surface proteins preferentially expressed on virus-permissive human epithelial cell lines, here we identify nectin-4 (ref. 8; also called poliovirus-receptor-like-4 (PVRL4)) as a candidate host exit receptor. This adherens junction protein of the immunoglobulin superfamily interacts with the viral attachment protein with high affinity through its membrane-distal domain. Nectin-4 sustains measles virus entry and non-cytopathic lateral spread in well-differentiated primary human airway epithelial sheets infected basolaterally. It is downregulated in infected epithelial cells, including those of macaque tracheae. Although other viruses use receptors to enter hosts or transit through their epithelial barriers, we suggest that measles virus targets nectin-4 to emerge in the airways. Nectin-4 is a cellular marker of several types of cancer, which has implications for ongoing measles-virus-based clinical trials of oncolysis.
Insights
Measles virus uses nectin-4 as a novel host exit receptor to re-enter airways. This discovery explains how the virus spreads within the respiratory system and has implications for cancer research.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Measles virus is a major cause of childhood mortality, transmitted via aerosols.
- Previously, measles virus entry was thought to be solely in the respiratory epithelium.
- Recent findings indicate initial infection of airway immune cells (macrophages, dendritic cells) via SLAMF1.
Purpose of the Study:
- To identify the host receptor responsible for measles virus exit from epithelial cells back into the airways.
- To elucidate the mechanism of measles virus spread within the respiratory system.
Main Methods:
- Functional analysis of surface proteins on human airway epithelial cells.
- Identification of nectin-4 (PVRL4) as a potential host exit receptor.
- In vitro studies using differentiated primary human airway epithelial sheets.
Main Results:
- Nectin-4, an adherens junction protein, was identified as a high-affinity receptor for measles virus.
- Nectin-4 facilitates measles virus entry and non-cytopathic lateral spread in airway epithelial cells.
- Nectin-4 expression is downregulated in infected epithelial cells, including in macaque tracheae.
Conclusions:
- Measles virus utilizes nectin-4 as a host exit receptor to re-emerge in the airways.
- This mechanism is crucial for measles virus dissemination within the respiratory tract.
- Nectin-4's role in measles virus infection may have implications for measles virus-based cancer therapy (oncolysis).
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