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Infectious Bronchitis Coronavirus Limits Interferon Production by Inducing a Host Shutoff That Requires Accessory
Joeri Kint1,2, Martijn A Langereis3, Helena J Maier4
1Cell Biology and Immunology Group, Wageningen Institute of Animal Sciences, Wageningen University, Wageningen, The Netherlands.
Unlabelled:
During infection of their host cells, viruses often inhibit the production of host proteins, a process that is referred to as host shutoff. By doing this, viruses limit the production of antiviral proteins and increase production capacity for viral proteins. Coronaviruses from the genera Alphacoronavirus and Betacoronavirus, such as severe acute respiratory syndrome coronavirus (SARS-CoV), establish host shutoff via their nonstructural protein 1 (nsp1). The Gammacoronavirus and Deltacoronavirus genomes, however, do not encode nsp1, and it has been suggested that these viruses do not induce host shutoff. Here, we show that the Gammacoronavirus infectious bronchitis virus (IBV) does induce host shutoff, and we find that its accessory protein 5b is indispensable for this function. Importantly, we found that 5b-null viruses, unlike wild-type viruses, induce production of high concentrations of type I interferon protein in vitro, indicating that host shutoff by IBV plays an important role in antagonizing the host's innate immune response. Altogether, we demonstrate that 5b is a functional equivalent of nsp1, thereby answering the longstanding question of whether lack of nsp1 in gammacoronaviruses is compensated for by another viral protein. As such, our study is a significant step forward in the understanding of coronavirus biology and closes a gap in the understanding of some IBV virulence strategies.
Importance:
Many viruses inhibit protein synthesis by their host cell to enhance virus replication and to antagonize antiviral defense mechanisms. This process is referred to as host shutoff. We studied gene expression and protein synthesis in chicken cells infected with the important poultry pathogen infectious bronchitis virus (IBV). We show that IBV inhibits synthesis of host proteins, including that of type I interferon, a key component of the antiviral response. The IBV-induced host shutoff, however, does not require degradation of host RNA. Furthermore, we demonstrate that accessory protein 5b of IBV plays a crucial role in the onset of host shutoff. Our findings suggest that inhibition of host protein synthesis is a common feature of coronaviruses and primarily serves to inhibit the antiviral response of the host.
Insights
Infectious bronchitis virus (IBV) uses accessory protein 5b to shut off host cell protein production, a function previously attributed only to nsp1 in other coronaviruses. This mechanism helps IBV evade the host
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Viruses often induce "host shutoff" to suppress antiviral responses and promote viral replication.
- Coronaviruses in the Alphacoronavirus and Betacoronavirus genera use nonstructural protein 1 (nsp1) for host shutoff.
- Gammacoronavirus and Deltacoronavirus genomes lack nsp1, leading to questions about their host shutoff mechanisms.
Purpose of the Study:
- To investigate whether Gammacoronavirus infectious bronchitis virus (IBV) induces host shutoff.
- To identify the viral protein responsible for host shutoff in IBV.
- To determine the role of IBV-induced host shutoff in antagonizing the host's innate immune response.
Main Methods:
- Studied gene expression and protein synthesis in chicken cells infected with IBV.
- Investigated the role of IBV accessory protein 5b in host shutoff.
- Compared protein production in cells infected with wild-type IBV versus 5b-null IBV.
Main Results:
- IBV induces host shutoff, inhibiting host protein synthesis, including type I interferon.
- Accessory protein 5b is essential for IBV-induced host shutoff.
- IBV 5b-null viruses fail to suppress type I interferon production, unlike wild-type viruses.
Conclusions:
- Accessory protein 5b of IBV is a functional equivalent of nsp1, compensating for the lack of nsp1 in Gammacoronaviruses.
- IBV-induced host shutoff is crucial for antagonizing the host's innate immune response, particularly type I interferon production.
- Inhibition of host protein synthesis is a common strategy among coronaviruses to evade antiviral defenses.
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