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.

Journal of Virology
|June 10, 2016
PubMed
Abstract

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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