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A Fluorogenic Peptide Cleavage Assay to Screen for Proteolytic Activity: Applications for coronavirus spike protein activation
Published on: January 9, 2019
Coronavirus infectious bronchitis virus spike protein inhibits FUNDC1-mediated mitophagy to prevent nucleocapsid
Jun Zhao1,2, Jiaxin Tian1,2, Liwei Zhang1,2
1State Key Laboratory of Veterinary Public Health and Safety, College of Veterinary Medicine, China Agricultural University, Beijing, China.
Abstract:
Autophagy is involved in various stages of the viral life cycle and modulates viral replication. Coronaviruses have developed several strategies to exploit autophagy for their benefit. Nevertheless, the exact mechanisms through which the infectious bronchitis virus (IBV) influences autophagy remain inadequately understood. Here, we demonstrate that IBV infection of chicken embryonic kidney (CEK) cells activates the AKT-mTOR signaling pathway to suppress autophagosome formation and mitophagy. Further investigation reveals that the viral spike protein (S) inhibits cellular autophagy by interacting with the mitophagy receptor FUNDC1. However, FUNDC1-mediated mitophagy promotes degradation of the viral nucleocapsid (N) protein and restricts IBV replication. To counteract this host defense mechanism, the S protein competitively binds to the LC3-interacting region (LIR) motif of FUNDC1, thereby disrupting its interaction with LC3 and ultimately suppressing mitophagy. Molecular docking analysis revealed that a conserved asparagine residue at position 240 (N240) in the S1 subunit of the IBV S protein is essential for binding to FUNDC1. Furthermore, reverse genetics demonstrated that an IBV mutant with an N240A substitution exhibited reduced pathogenicity in the kidneys, trachea, and lungs of specific-pathogen-free (SPF) chickens compared to the wild-type virus. Collectively, these findings unveil a novel mechanism by which IBV antagonizes host mitophagy and provide new insights into the host-virus interplay within the context of autophagic regulation.IMPORTANCEIBV has evolved a mechanism to counteract the host's antiviral defense. Specifically, the viral spike (S) protein blocks a form of autophagy called mitophagy by binding to the mitochondrial receptor FUNDC1. Normally, FUNDC1 helps cells eliminate damaged mitochondria and restricts IBV replication by promoting the degradation of the viral nucleocapsid protein. By interfering with this process, the S protein enhances viral survival. We further identified a single conserved amino acid in the S protein that is critical for this function, and mutation of this residue weakened IBV in chickens. These findings reveal how IBV manipulates host defenses and suggest new strategies for controlling coronavirus infections.
Insights
The infectious bronchitis virus (IBV) spike protein blocks mitophagy, a cellular defense mechanism, by binding to FUNDC1. This interaction hinders the degradation of viral proteins, promoting viral survival and pathogenicity in chickens.
Area of Science:
- Virology
- Cellular Biology
- Immunology
Background:
- Autophagy plays a role in viral replication, with coronaviruses exploiting it.
- The specific mechanisms of autophagy modulation by infectious bronchitis virus (IBV) are not fully understood.
Purpose of the Study:
- To elucidate how IBV influences autophagy and mitophagy.
- To identify viral factors involved in antagonizing host antiviral defenses.
Main Methods:
- Infection of chicken embryonic kidney (CEK) cells with IBV.
- Analysis of AKT-mTOR signaling pathway activation.
- Investigation of viral spike (S) protein interaction with mitophagy receptor FUNDC1.
- Molecular docking and reverse genetics to assess viral mutant pathogenicity.
Main Results:
- IBV infection activates AKT-mTOR, suppressing autophagosome formation and mitophagy.
- The IBV S protein inhibits autophagy by binding to FUNDC1, preventing nucleocapsid (N) protein degradation.
- A conserved asparagine at position 240 (N240) in the S1 subunit is crucial for FUNDC1 binding.
- An IBV N240A mutant showed reduced pathogenicity in chicken organs.
Conclusions:
- IBV antagonizes host mitophagy via its S protein, which disrupts FUNDC1-mediated degradation of viral components.
- This viral strategy counteracts host antiviral defenses, enhancing viral survival.
- The N240 residue is critical for IBV's pathogenicity, offering potential targets for control strategies.
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