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From Naturally-Sourced Protease Inhibitors to New Treatments for Fungal Infections.

Davier Gutierrez-GongoraJennifer Geddes-McAlister
Published in: Journal of fungi (Basel, Switzerland) (2021)
Proteases are involved in a broad range of physiological processes, including host invasion by fungal pathogens, and enzymatic inhibition is a key molecular mechanism controlling proteolytic activity. Importantly, inhibitors from natural or synthetic sources have demonstrated applications in biochemistry, biotechnology, and biomedicine. However, the need to discover new reservoirs of these inhibitory molecules with improved efficacy and target range has been underscored by recent protease characterization related to infection and antimicrobial resistance. In this regard, naturally-sourced inhibitors show promise for application in diverse biological systems due to high stability at physiological conditions and low cytotoxicity. Moreover, natural sources (e.g., plants, invertebrates, and microbes) provide a large reservoir of undiscovered and/or uncharacterized bioactive molecules involved in host defense against predators and pathogens. In this Review, we highlight discoveries of protease inhibitors from environmental sources, propose new opportunities for assessment of antifungal activity, and discuss novel applications to combat biomedically-relevant fungal diseases with in vivo and clinical purpose.
Keyphrases
  • antimicrobial resistance
  • drinking water
  • hydrogen peroxide
  • cell wall
  • nitric oxide
  • deep learning
  • artificial intelligence
  • life cycle