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N-Linked Glycans Shape Skin Immune Responses during Arthritis and Myositis after Intradermal Infection with Ross
Kothila Tharmarajah1,2,3, Arun Everest-Dass4, Jelena Vider2
1Emerging Viruses, Inflammation and Therapeutics Group, Menzies Health Institute Queensland, Griffith Universitygrid.1022.1, Gold Coast, Queensland, Australia.
Abstract:
Arthritogenic alphaviruses are mosquito-borne arboviruses that include several re-emerging human pathogens, including the chikungunya (CHIKV), Ross River (RRV), Mayaro (MAYV), and o'nyong-nyong (ONNV) virus. Arboviruses are transmitted via a mosquito bite to the skin. Herein, we describe intradermal RRV infection in a mouse model that replicates the arthritis and myositis seen in humans with Ross River virus disease (RRVD). We show that skin infection with RRV results in the recruitment of inflammatory monocytes and neutrophils, which together with dendritic cells migrate to draining lymph nodes (LN) of the skin. Neutrophils and monocytes are productively infected and traffic virus from the skin to LN. We show that viral envelope N-linked glycosylation is a key determinant of skin immune responses and disease severity. RRV grown in mammalian cells elicited robust early antiviral responses in the skin, while RRV grown in mosquito cells stimulated poorer early antiviral responses. We used glycan mass spectrometry to characterize the glycan profile of mosquito and mammalian cell-derived RRV, showing deglycosylation of the RRV E2 glycoprotein is associated with curtailed skin immune responses and reduced disease following intradermal infection. Altogether, our findings demonstrate skin infection with an arthritogenic alphavirus leads to musculoskeletal disease and envelope glycoprotein glycosylation shapes disease outcome. IMPORTANCE Arthritogenic alphaviruses are transmitted via mosquito bites through the skin, potentially causing debilitating diseases. Our understanding of how viral infection starts in the skin and how virus systemically disseminates to cause disease remains limited. Intradermal arbovirus infection described herein results in musculoskeletal pathology, which is dependent on viral envelope N-linked glycosylation. As such, intradermal infection route provides new insights into how arboviruses cause disease and could be extended to future investigations of skin immune responses following infection with other re-emerging arboviruses.
Insights
Arthritogenic alphaviruses like Ross River virus (RRV) cause arthritis after mosquito bites. Viral envelope glycosylation impacts skin immunity and disease severity, offering new insights into arbovirus infections.
Area of Science:
- Virology
- Immunology
- Infectious Diseases
Background:
- Arthritogenic alphaviruses are mosquito-borne pathogens causing re-emerging human diseases.
- Ross River virus (RRV) infection leads to arthritis and myositis in humans.
- Understanding the initial stages of skin infection and systemic virus dissemination is crucial.
Purpose of the Study:
- To establish and characterize an intradermal RRV infection mouse model.
- To investigate the role of viral envelope N-linked glycosylation in disease pathogenesis.
- To elucidate early immune responses in the skin following arbovirus infection.
Main Methods:
- Intradermal inoculation of mice with RRV.
- Analysis of immune cell recruitment (monocytes, neutrophils, dendritic cells) to the skin and draining lymph nodes.
- Glycan mass spectrometry to characterize RRV E2 glycoprotein glycosylation.
- Comparison of RRV grown in mammalian versus mosquito cells.
Main Results:
- Intradermal RRV infection in mice recapitulates human Ross River virus disease (RRVD).
- Skin infection triggers recruitment of inflammatory monocytes and neutrophils, which transport the virus to lymph nodes.
- Viral envelope N-linked glycosylation is a key determinant of immune response and disease severity.
- RRV grown in mammalian cells induced stronger early antiviral responses than RRV grown in mosquito cells.
Conclusions:
- Intradermal arbovirus infection leads to musculoskeletal disease, influenced by viral envelope glycosylation.
- The glycosylation status of the RRV E2 glycoprotein affects immune responses and disease outcome.
- This study provides novel insights into arbovirus pathogenesis initiated at the skin.
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