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Colocalization of Chikungunya Virus with Its Receptor MXRA8 during Cell Attachment, Internalization, and Membrane
Fei Feng1, Ellen M Bouma2, Gaowei Hu1
1Key Laboratory of Medical Molecular Virology (MOE/NHC/CAMS), Shanghai Institute of Infectious Disease and Biosecurity, School of Basic Medical Sciences, Shanghai Medical College, Fudan University, Shanghai, China.
Abstract:
Arthritogenic alphaviruses, including chikungunya virus (CHIKV), preferentially target joint tissues and cause chronic rheumatic disease that adversely impacts the quality of life of patients. Viruses enter target cells via interaction with cell surface receptor(s), which determine the viral tissue tropism and pathogenesis. Although MXRA8 is a recently identified receptor for several clinically relevant arthritogenic alphaviruses, its detailed role in the cell entry process has not been fully explored. We found that in addition to its localization on the plasma membrane, MXRA8 is present in acidic organelles, endosomes, and lysosomes. Moreover, MXRA8 is internalized into cells without a requirement for its transmembrane and cytoplasmic domains. Confocal microscopy and live cell imaging revealed that MXRA8 interacts with CHIKV at the cell surface and then enters cells along with CHIKV particles. At the moment of membrane fusion in the endosomes, many viral particles are still colocalized with MXRA8. These findings provide insight as to how MXRA8 functions in alphavirus internalization and suggest possible targets for antiviral development. IMPORTANCE The globally distributed arthritogenic alphaviruses have infected millions of humans and induce rheumatic disease, such as severe polyarthralgia/polyarthritis, for weeks to years. Alphaviruses infect target cells through receptor(s) followed by clathrin-mediated endocytosis. MXRA8 was recently identified as an entry receptor that shapes the tropism and pathogenesis for multiple arthritogenic alphaviruses, including chikungunya virus (CHIKV). Nonetheless, the exact functions of MXRA8 during the process of viral cell entry remain undetermined. Here, we have provided compelling evidence for MXRA8 as a bona fide entry receptor that mediates the uptake of alphavirus virions. Small molecules that disrupt MXRA8-dependent binding of alphaviruses or internalization steps could serve as a platform for unique classes of antiviral drugs.
Insights
Matrix protein 8 (MXRA8) facilitates chikungunya virus (CHIKV) entry into cells by binding to the virus and internalizing with it into endosomes. This interaction is crucial for alphavirus infection and suggests new antiviral drug targets.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Arthritogenic alphaviruses like chikungunya virus (CHIKV) cause chronic rheumatic diseases.
- Viral entry into host cells is mediated by cell surface receptors, determining tissue tropism and disease.
- MXRA8 is a known receptor for arthritogenic alphaviruses, but its precise role in cell entry is unclear.
Purpose of the Study:
- To investigate the detailed function of MXRA8 in the cell entry process of arthritogenic alphaviruses.
- To explore the localization and internalization mechanism of MXRA8 during viral infection.
Main Methods:
- Confocal microscopy and live cell imaging were used to track MXRA8 and CHIKV.
- Analysis of MXRA8 localization in different cellular compartments.
- Investigation of MXRA8 internalization independent of its transmembrane and cytoplasmic domains.
Main Results:
- MXRA8 is found not only on the plasma membrane but also within endosomes and lysosomes.
- MXRA8 is internalized into cells without its transmembrane or cytoplasmic domains.
- MXRA8 interacts with CHIKV at the cell surface and is internalized with viral particles into endosomes.
- Viral particles colocalize with MXRA8 during the membrane fusion stage within endosomes.
Conclusions:
- MXRA8 acts as a genuine entry receptor mediating alphavirus virion uptake.
- The findings elucidate MXRA8's role in alphavirus internalization, highlighting its importance in viral pathogenesis.
- Disrupting MXRA8-alphavirus interactions presents a potential strategy for developing novel antiviral therapies.
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