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Antiviral Property of the Fungal Metabolite 3- O -Methylfunicone in Bovine Herpesvirus 1 Infection.

Filomena FioritoClaudia CerracchioMaria Michela SalvatoreFrancesco SerraAlessia PucciarelliMaria Grazia AmorosoRosario NicolettiAndolfi Anna
Published in: Microorganisms (2022)
Bovine herpesvirus type-1 (BoHV-1) is a widespread pathogen that provokes infectious rhinotracheitis and polymicrobial infections in cattle, resulting in serious economic losses to the farm animal industry and trade restrictions. To date, non-toxic active drugs against BoHV-1 are not available. The exploitation of bioactive properties of microbial products is of great pharmaceutical interest. In fact, fungi are a promising source of novel drugs with a broad spectrum of activities and functions, including antiviral properties. Hence, the potential antiviral properties of 3- O -methylfunicone (OMF), a secondary metabolite produced by Talaromyces pinophilus , were evaluated on BoHV-1. In this study, during BoHV-1 infection in bovine cells (MDBK), the non-toxic concentration of 5 µM OMF considerably reduced signs of cell death and increased cell proliferation. Furthermore, OMF significantly decreased the virus titer as well as the cytopathic effect and strongly inhibited the expression of bICP0, the major regulatory protein in the BoHV-1 lytic cycle. These findings were accompanied by a considerable up-regulation in the expression of the aryl hydrocarbon receptor (AhR), a multifunctional transcription factor also linked to the host's response to a herpesvirus infection. Overall, our results suggest that by involving AhR, OMF shows potential against a BoHV-1 infection.
Keyphrases
  • transcription factor
  • cell death
  • cell proliferation
  • poor prognosis
  • binding protein
  • cell cycle arrest
  • risk assessment
  • human health
  • oxidative stress
  • cancer therapy
  • drug induced
  • metal organic framework