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CD8+ T Cells and Macrophages Regulate Pathogenesis in a Mouse Model of Middle East Respiratory Syndrome
Christopher M Coleman1, Jeanne M Sisk1, Gabor Halasz2
1Department of Microbiology and Immunology, University of Maryland School of Medicine, Baltimore, Maryland, USA.
Abstract:
Middle East respiratory syndrome coronavirus (MERS-CoV) is an important emerging pathogen that was first described in 2012. While the cell surface receptor for MERS-CoV has been identified as dipeptidyl peptidase 4 (DPP4), the mouse DPP4 homologue does not allow virus entry into cells. Therefore, development of mouse models of MERS-CoV has been hampered by the fact that MERS-CoV does not replicate in commonly available mouse strains. We have previously described a mouse model in which mDPP4 was replaced with hDPP4 such that hDPP4 is expressed under the endogenous mDPP4 promoter. In this study, we used this mouse model to analyze the host response to MERS-CoV infection using immunological assays and transcriptome analysis. Depletion of CD4+ T cells, CD8+ T cells, or macrophages has no effect on MERS-CoV replication in the lungs of infected mice. However, we found that depletion of CD8+ T cells protects and depletion of macrophages exacerbates MERS-CoV-induced pathology and clinical symptoms of disease. Overall, we demonstrate an important role for the inflammatory response in regulating MERS-CoV pathogenesis in vivo IMPORTANCE: The Middle East respiratory syndrome coronavirus (MERS-CoV) is a highly pathogenic respiratory virus that emerged from zoonotic sources in 2012. Human infections are still occurring throughout Saudi Arabia at a 38% case fatality rate, with the potential for worldwide spread via air travel. In this work, we identify the host response to the virus and identify inflammatory pathways and cell populations that are critical for protection from severe lung disease. By understanding the immune response to MERS-CoV we can develop targeted therapies to inhibit pathogenesis in the future.
Insights
Middle East respiratory syndrome coronavirus (MERS-CoV) infection severity is influenced by the host
Area of Science:
- Virology
- Immunology
- Pathogenesis
Background:
- Middle East respiratory syndrome coronavirus (MERS-CoV), a significant emerging pathogen since 2012, utilizes dipeptidyl peptidase 4 (DPP4) as its cell surface receptor.
- The lack of MERS-CoV replication in common mouse strains has hindered the development of effective animal models for studying the virus.
- A previously developed mouse model expressing human DPP4 (hDPP4) under the endogenous mouse DPP4 promoter allows for MERS-CoV replication and pathogenesis studies.
Purpose of the Study:
- To investigate the host immune response to MERS-CoV infection in a relevant mouse model.
- To identify specific immune cell populations and inflammatory pathways that modulate MERS-CoV-induced lung disease.
Main Methods:
- Utilized a genetically modified mouse model expressing human DPP4 (hDPP4) to enable MERS-CoV replication.
- Employed immunological assays and transcriptome analysis to assess host responses.
- Performed targeted depletion of CD4+ T cells, CD8+ T cells, and macrophages to evaluate their roles in MERS-CoV pathogenesis.
Main Results:
- Depletion of CD4+ T cells, CD8+ T cells, or macrophages did not affect MERS-CoV replication levels in the lungs.
- Depletion of CD8+ T cells conferred protection against MERS-CoV-induced lung pathology and disease symptoms.
- Depletion of macrophages exacerbated MERS-CoV-induced lung pathology and clinical disease severity.
Conclusions:
- The inflammatory response plays a critical role in regulating MERS-CoV pathogenesis in vivo.
- CD8+ T cells are protective against severe lung disease caused by MERS-CoV.
- Macrophages contribute to MERS-CoV-induced lung injury, suggesting a complex role in disease progression.
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