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.

Journal of Virology
|September 12, 2014
PubMed
Abstract

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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