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Murine Hepatitis Virus nsp14 Exoribonuclease Activity Is Required for Resistance to Innate Immunity
James Brett Case1,2, Yize Li3, Ruth Elliott3
1Department of Pathology, Microbiology, and Immunology, Vanderbilt University Medical Center, Nashville, Tennessee, USA.
Abstract:
Coronaviruses (CoVs) are positive-sense RNA viruses that infect numerous mammalian and avian species and are capable of causing severe and lethal disease in humans. CoVs encode several innate immune antagonists that counteract the host innate immune response to facilitate efficient viral replication. CoV nonstructural protein 14 (nsp14) encodes 3'-to-5' exoribonuclease activity (ExoN), which performs a proofreading function and is required for high-fidelity replication. Outside of the order Nidovirales, arenaviruses are the only RNA viruses that encode an ExoN, which functions to degrade double-stranded RNA (dsRNA) replication intermediates. In this study, we tested the hypothesis that CoV ExoN also functions to antagonize the innate immune response. We demonstrate that viruses lacking ExoN activity [ExoN(-)] are sensitive to cellular pretreatment with interferon beta (IFN-β) in a dose-dependent manner. In addition, ExoN(-) virus replication was attenuated in wild-type bone marrow-derived macrophages (BMMs) and partially restored in interferon alpha/beta receptor-deficient (IFNAR-/-) BMMs. ExoN(-) virus replication did not result in IFN-β gene expression, and in the presence of an IFN-β-mediated antiviral state, ExoN(-) viral RNA levels were not substantially reduced relative to those of untreated samples. However, ExoN(-) virus generated from IFN-β-pretreated cells had reduced specific infectivity and decreased relative fitness, suggesting that ExoN(-) virus generated during an antiviral state is less viable to establish a subsequent infection. Overall, our data suggest murine hepatitis virus (MHV) ExoN activity is required for resistance to the innate immune response, and antiviral mechanisms affecting the viral RNA sequence and/or an RNA modification act on viruses lacking ExoN activity.IMPORTANCE CoVs encode multiple antagonists that prevent or disrupt an efficient innate immune response. Additionally, no specific antiviral therapies or vaccines currently exist for human CoV infections. Therefore, the study of CoV innate immune antagonists is essential for understanding how CoVs overcome host defenses and to maximize potential therapeutic interventions. Here, we sought to determine the contributions of nsp14 ExoN activity in the induction of and resistance to the innate immune response. We show that viruses lacking nsp14 ExoN activity are more sensitive than wild-type MHV to restriction by exogenous IFN-β and that viruses produced in the presence of an antiviral state are less capable of establishing a subsequent viral infection. Our results support the hypothesis that murine hepatitis virus ExoN activity is required for resistance to the innate immune response.
Insights
Coronaviruses lacking nsp14 exoribonuclease (ExoN) activity are more susceptible to interferon beta. Viruses produced during an antiviral state are less capable of establishing subsequent infections, highlighting ExoN
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Coronaviruses (CoVs) are RNA viruses causing severe human diseases.
- CoVs possess innate immune antagonists to ensure viral replication.
- Nonstructural protein 14 (nsp14) in CoVs has 3'-to-5' exoribonuclease (ExoN) activity crucial for proofreading.
Purpose of the Study:
- To investigate the hypothesis that CoV ExoN antagonizes the innate immune response.
- To determine the role of nsp14 ExoN activity in CoV resistance to innate immunity.
Main Methods:
- Assessing the sensitivity of ExoN-deficient (ExoN(-)) viruses to interferon beta (IFN-β).
- Comparing ExoN(-) virus replication in wild-type and IFNAR-deficient macrophages.
- Evaluating viral RNA levels, infectivity, and fitness in the presence of an antiviral state.
Main Results:
- ExoN(-) viruses are sensitive to IFN-β pretreatment in a dose-dependent manner.
- ExoN(-) virus replication is attenuated in wild-type macrophages but restored in IFNAR-deficient ones.
- ExoN(-) viruses produced during an antiviral state exhibit reduced infectivity and fitness.
Conclusions:
- Murine hepatitis virus (MHV) ExoN activity is essential for resisting the innate immune response.
- Antiviral mechanisms targeting RNA sequence or modification impact viruses lacking ExoN activity.
- Understanding CoV immune antagonists is vital for developing therapeutic interventions.
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