Related Experiment Video
Updated: May 6, 2026

Development of an in vitro model system for studying the interaction of Equus caballus IgE with its high-affinity receptor FcεRI
Published on: November 1, 2014
CD81 is a receptor for equine arteritis virus (family: Arteriviridae)
Sara M Maloney1,2, Teressa M Shaw1, Kylie M Nennig1
1Department of Pathology and Laboratory Medicine, University of Wisconsin-Madison School of Medicine and Public Health, Madison, Wisconsin, USA.
Abstract:
Arteriviruses are a family of single-stranded, positive-sense RNA (+ssRNA) viruses that infect diverse animal hosts. Many arteriviruses are macrophage-tropic, consistent with their utilization of the macrophage-specific molecule CD163 as a receptor. However, the horse arterivirus (equine arteritis virus, EAV), which infects additional cell types beyond macrophages, does not utilize CD163 in its entry mechanism. Here, we use a genome-wide CRISPR knockout screen to identify alternative receptors that could explain this discrepancy in arterivirus receptor utilization and tropism, identifying the plasma membrane tetraspanin CD81 as a required host factor for EAV infection. Genetic knockout of CD81 or pre-incubation with soluble CD81 protected cells from infection with EAV, but had no impact on susceptibility to other arteriviruses. Bypassing the entry step of the viral life cycle by transfecting the EAV genome into CD81-knockout cells produced infectious EAV, implicating CD81 in the EAV entry process. Screening of CD81 orthologs from natural arterivirus hosts identified the brushtail possum CD81 as unsupportive of EAV entry, indicating that CD81 incompatibility can serve as a barrier to cross-species infection. Horse/possum CD81 chimeras were then used to map the structural domains of CD81 engaged by EAV, identifying alpha helix "D" on the large extracellular loop of CD81 as critical for EAV entry. This study identifies the first example of receptor switching in the Arteriviridae family and, given the broad tissue distribution of CD81 expression, suggests that the adoption of CD81 enabled an expansion of EAV tropism.IMPORTANCEArteriviruses are a family of diverse positive-sense RNA viruses that can infect a wide range of animal hosts, but many details regarding how arteriviruses gain entry into cells remain unclear. Most arteriviruses are thought to utilize the macrophage-specific molecule CD163 as a receptor; however, the horse arterivirus (equine arteritis virus, EAV) infects additional cell types beyond macrophages and does not utilize CD163. In this study, we identified the host factor CD81 as a significant player in EAV entry. Beyond the implications that this discovery holds for equine health, this study adds to the increasingly complex picture of arterivirus entry and demonstrates that these viruses are capable of adopting new host molecules as receptors, with consequences for the types of cells these viruses infect, the disease they cause, and their mode(s) of transmission.
Insights
Equine arteritis virus (EAV) uses CD81, not CD163, for cell entry, expanding its tropism. This discovery reveals receptor switching in arteriviruses and impacts understanding of viral host range and transmission.
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Arteriviruses are RNA viruses with diverse animal hosts.
- Most arteriviruses use CD163 for cell entry, primarily infecting macrophages.
- Equine arteritis virus (EAV) infects various cell types and does not use CD163.
Purpose of the Study:
- Identify alternative receptors for EAV entry.
- Understand the mechanism behind EAV's broader cell tropism compared to other arteriviruses.
- Investigate the role of CD81 in EAV infection and cross-species transmission.
Main Methods:
- Genome-wide CRISPR knockout screen to identify host factors for EAV infection.
- Genetic knockout and soluble protein assays to validate CD81's role.
- Chimera analysis of horse and possum CD81 to map interaction domains.
Main Results:
- CD81 was identified as a crucial host factor for EAV entry.
- CD81 knockout or soluble CD81 inhibited EAV infection but not other arteriviruses.
- Specific domains on CD81, particularly alpha helix D, were critical for EAV binding and entry.
- CD81 incompatibility in possums presented a barrier to cross-species infection.
Conclusions:
- EAV utilizes CD81 for cell entry, a novel mechanism within the Arteriviridae family.
- CD81 adoption likely enabled EAV's expanded tissue tropism and broader host cell range.
- Understanding CD81's role is critical for equine health and viral transmission dynamics.
Related Concept Videos
Arboviral Encephalitis
Hepatitis
Encephalitis l: Introduction
Encephalitis ll: Pathophysiology
Viral Hepatitis I: Introduction

