Related Experiment Video
Updated: Aug 21, 2026

Arbovirus Infections As Screening Tools for the Identification of Viral Immunomodulators and Host Antiviral Factors
Published on: September 13, 2018
Lachesin is a mosquito receptor for multiple arthritogenic alphaviruses
Abstract:
Arthritogenic alphaviruses cause acute febrile illnesses associated with rash and arthritis when they are transmitted to humans through the bite of infected mosquitoes. Among these, chikungunya virus (CHIKV), transmitted primarily through the bite of infected Aedes aegypti and Aedes albopictus mosquitoes, causes explosive outbreaks involving hundreds of thousands to millions of cases, with recent re-emergence in several global regions. While several cellular receptors that mediate alphavirus entry into mammalian cells have been identified, their mosquito counterparts remained unknown, largely due to a lack of functional genomics tools for these invertebrate species. Here, we established a CRISPR-based genetic screening platform in Aedes albopictus cells and used it to identify Lachesin, a conserved invertebrate cell adhesion molecule, as a receptor for CHIKV and multiple related alphaviruses including Semliki Forest virus (SFV), o'nyong-nyong virus (ONNV), Mayaro virus (MAYV), and Ross River virus (RRV). Lachesin depletion using RNA interference, anti-Lachesin antibody treatment, and soluble forms of Lachesin blocked CHIKV and SFV E2-E1 glycoprotein-mediated infection of mosquito cells. We show that alphavirus E2-E1 glycoproteins bind the first immunoglobulin domain of Lachesin, facilitating attachment and internalization of virus-like particles. Orthologs from divergent mosquito genera, but not from arachnids or other arthropods, also serve as alphavirus receptors, suggesting that cellular receptor binding is not the main obstacle to arthritogenic alphavirus vector host expansion. Our findings enhance understanding of the mechanisms of alphavirus emergence and vector competence and could aid in the development of broadly active, entry-targeted therapeutics against multiple alphaviruses that threaten public health.
Insights
Researchers identified Lachesin as a key receptor for chikungunya virus (CHIKV) and related alphaviruses in mosquitoes. This discovery advances understanding of virus transmission and potential therapeutic targets.
Area of Science:
- Virology
- Molecular Biology
- Entomology
Background:
- Arthritogenic alphaviruses cause febrile illnesses, rash, and arthritis in humans via mosquito bites.
- Chikungunya virus (CHIKV) outbreaks are re-emerging globally, transmitted by Aedes mosquitoes.
- Mosquito cell receptors for alphaviruses were previously unidentified due to limited functional genomics tools.
Purpose of the Study:
- To identify mosquito cell receptors for arthritogenic alphaviruses.
- To investigate the mechanism of alphavirus entry into mosquito cells.
- To explore potential targets for broad-spectrum alphavirus therapeutics.
Main Methods:
- Established a CRISPR-based genetic screening platform in Aedes albopictus cells.
- Utilized RNA interference and antibody treatments to deplete Lachesin.
- Analyzed the binding of alphavirus glycoproteins to Lachesin and virus-like particle internalization.
Main Results:
- Identified Lachesin, a cell adhesion molecule, as a receptor for CHIKV and related alphaviruses (SFV, ONNV, MAYV, RRV).
- Demonstrated that Lachesin depletion blocks alphavirus infection in mosquito cells.
- Showed alphavirus E2-E1 glycoproteins bind Lachesin's immunoglobulin domain, facilitating viral entry.
Conclusions:
- Lachesin is a crucial receptor for multiple arthritogenic alphaviruses in mosquitoes.
- Alphavirus receptor binding in mosquitoes is conserved across genera, suggesting other factors limit host expansion.
- Findings provide insights into alphavirus emergence and vector competence, aiding therapeutic development.
Related Concept Videos
Arboviral Encephalitis
Rabies
Encephalitis l: Introduction
Viruses of Archaea

