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Published on: December 23, 2020
Coronavirus Endoribonuclease and Deubiquitinating Interferon Antagonists Differentially Modulate the Host Response
Aaron Volk1, Matthew Hackbart1, Xufang Deng1
1Department of Microbiology and Immunology, Loyola University Chicago Stritch School of Medicine, Maywood, Illinois, USA.
Abstract:
Coronaviruses (CoVs) encode multiple interferon (IFN) antagonists that modulate the host response to virus replication. Here, we evaluated the host transcriptional response to infection with murine coronaviruses encoding independent mutations in one of two different viral antagonists, the deubiquitinase (DUB) within nonstructural protein 3 or the endoribonuclease (EndoU) within nonstructural protein 15. We used transcriptomics approaches to compare the scope and kinetics of the host response to the wild-type (WT), DUBmut, and EndoUmut viruses in infected macrophages. We found that the EndoUmut virus activates a focused response that predominantly involves type I interferons and interferon-related genes, whereas the WT and DUBmut viruses more broadly stimulate upregulation of over 2,800 genes, including networks associated with activating the unfolded protein response (UPR) and the proinflammatory response associated with viral pathogenesis. This study highlights the role of viral interferon antagonists in shaping the kinetics and magnitude of the host response during virus infection and demonstrates that inactivating a dominant viral antagonist, the coronavirus endoribonuclease, dramatically alters the host response in macrophages.IMPORTANCE Macrophages are an important cell type during coronavirus infections because they "notice" the infection and respond by inducing type I interferons, which limits virus replication. In turn, coronaviruses encode proteins that mitigate the cell's ability to signal an interferon response. Here, we evaluated the host macrophage response to two independent mutant coronaviruses, one with reduced deubiquitinating activity (DUBmut) and the other containing an inactivated endoribonuclease (EndoUmut). We observed a rapid, robust, and focused response to the EndoUmut virus, which was characterized by enhanced expression of interferon and interferon-related genes. In contrast, wild-type virus and the DUBmut virus elicited a more limited interferon response and ultimately activated over 2,800 genes, including players in the unfolded protein response and proinflammatory pathways associated with progression of significant disease. This study reveals that EndoU activity substantially contributes to the ability of coronaviruses to evade the host innate response and to replicate in macrophages.
Insights
Murine coronaviruses use interferon antagonists to evade host defenses. Inactivating the endoribonuclease (EndoU) in coronaviruses triggered a strong interferon response in macrophages, unlike wild-type or DUBmut viruses.
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Coronaviruses (CoVs) possess interferon (IFN) antagonists crucial for modulating host antiviral responses.
- Macrophages are key players in antiviral immunity, detecting infections and initiating type I interferon production.
- Viral antagonists counteract host defenses, influencing virus replication and pathogenesis.
Purpose of the Study:
- To investigate the host transcriptional response to murine coronaviruses with mutations in key viral antagonists.
- To compare the effects of mutations in deubiquitinase (DUB) and endoribonuclease (EndoU) on the host immune response in macrophages.
- To elucidate the role of viral endoribonuclease in evading the host innate immune system.
Main Methods:
- Transcriptomic analysis of murine macrophages infected with wild-type (WT), DUBmut, and EndoUmut coronaviruses.
- Comparative analysis of gene expression profiles to assess the scope and kinetics of host responses.
- Focus on type I interferons, interferon-related genes, unfolded protein response (UPR), and proinflammatory pathways.
Main Results:
- The EndoUmut virus induced a focused and rapid host response, primarily involving type I interferons and related genes.
- WT and DUBmut viruses elicited broader transcriptional changes, upregulating over 2,800 genes.
- These broader responses included networks associated with the unfolded protein response and pro-inflammatory pathways.
Conclusions:
- Inactivating the coronavirus endoribonuclease (EndoU) significantly alters the host response in macrophages.
- Viral interferon antagonists, particularly EndoU, play a critical role in shaping the magnitude and kinetics of host antiviral immunity.
- EndoU activity is essential for coronaviruses to effectively evade innate immune detection and establish infection in macrophages.
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