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Stability and Structure of Bat Major Histocompatibility Complex Class I with Heterologous β2-Microglobulin
Published on: March 10, 2021
Matrix proteins of Nipah and Hendra viruses interact with beta subunits of AP-3 complexes
Weina Sun1, Thomas S McCrory1, Wei Young Khaw1
1Department of Veterinary and Biomedical Sciences, The Pennsylvania State University, University Park, Pennsylvania, USA.
Unlabelled:
Paramyxoviruses and other negative-strand RNA viruses encode matrix proteins that coordinate the virus assembly process. The matrix proteins link the viral glycoproteins and the viral ribonucleoproteins at virus assembly sites and often recruit host machinery that facilitates the budding process. Using a co-affinity purification strategy, we have identified the beta subunit of the AP-3 adapter protein complex, AP3B1, as a binding partner for the M proteins of the zoonotic paramyxoviruses Nipah virus and Hendra virus. Binding function was localized to the serine-rich and acidic Hinge domain of AP3B1, and a 29-amino-acid Hinge-derived polypeptide was sufficient for M protein binding in coimmunoprecipitation assays. Virus-like particle (VLP) production assays were used to assess the relationship between AP3B1 binding and M protein function. We found that for both Nipah virus and Hendra virus, M protein expression in the absence of any other viral proteins led to the efficient production of VLPs in transfected cells, and this VLP production was potently inhibited upon overexpression of short M-binding polypeptides derived from the Hinge region of AP3B1. Both human and bat (Pteropus alecto) AP3B1-derived polypeptides were highly effective at inhibiting the production of VLPs. VLP production was also impaired through small interfering RNA (siRNA)-mediated depletion of AP3B1 from cells. These findings suggest that AP-3-directed trafficking processes are important for henipavirus particle production and identify a new host protein-virus protein binding interface that could become a useful target in future efforts to develop small molecule inhibitors to combat paramyxoviral infections.
Importance:
Henipaviruses cause deadly infections in humans, with a mortality rate of about 40%. Hendra virus outbreaks in Australia, all involving horses and some involving transmission to humans, have been a continuing problem. Nipah virus caused a large outbreak in Malaysia in 1998, killing 109 people, and smaller outbreaks have since occurred in Bangladesh and India. In this study, we have defined, for the first time, host factors that interact with henipavirus M proteins and contribute to viral particle assembly. We have also defined a new host protein-viral protein binding interface that can potentially be targeted for the inhibition of paramyxovirus infections.
Insights
Researchers discovered that the AP-3 adapter protein complex subunit AP3B1 binds to Nipah and Hendra virus matrix proteins, crucial for virus assembly. Inhibiting this interaction with AP3B1 fragments effectively blocked virus-like particle production, suggesting a new target for antiviral therapies.
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- Paramyxoviruses, including Nipah and Hendra viruses, are zoonotic pathogens responsible for severe human infections.
- Matrix (M) proteins are essential for coordinating the assembly and budding of these negative-strand RNA viruses.
- Host cell machinery is often recruited by viral M proteins to facilitate virus release.
Purpose of the Study:
- To identify host factors interacting with Nipah and Hendra virus M proteins.
- To elucidate the role of host-virus protein interactions in henipavirus assembly.
- To define a novel host-viral binding interface for potential antiviral drug development.
Main Methods:
- Co-affinity purification to identify M protein binding partners.
- Co-immunoprecipitation assays to confirm and map binding domains.
- Virus-like particle (VLP) production assays to assess M protein function.
- Small interfering RNA (siRNA) to deplete AP3B1 expression.
Main Results:
- The beta subunit of the AP-3 adapter protein complex, AP3B1, was identified as a binding partner for Nipah and Hendra virus M proteins.
- Binding occurred within the Hinge domain of AP3B1, and a 29-amino-acid polypeptide was sufficient for interaction.
- M protein-induced VLP production was potently inhibited by AP3B1-derived polypeptides and AP3B1 depletion.
- Both human and bat AP3B1 polypeptides effectively inhibited VLP production.
Conclusions:
- AP-3-directed trafficking is important for henipavirus particle production.
- A novel host protein-viral protein binding interface between AP3B1 and M protein has been characterized.
- This interaction represents a potential therapeutic target for developing novel paramyxoviral inhibitors.
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