Rationally Designed Minimal Bioactive Domains of AS-48 Bacteriocin Homologs Possess Potent Antileishmanial Properties

Hannah N Corman1,2, Jessica N Ross1,2, Francisco R Fields3

  • 1University of Notre Dame, Department of Biological Sciences, Notre Dame, Indiana, USA.

Microbiology Spectrum
|November 7, 2022
PubMed

Insights

Novel bacteriocin-based peptides show promise for treating leishmaniasis, a neglected tropical disease. Researchers engineered minimal domains of enterocin AS-48, developing potent antileishmanial agents with low host toxicity, offering hope for new therapies.

Area of Science:

  • Microbiology
  • Parasitology
  • Drug Discovery

Background:

  • Leishmaniasis is a neglected tropical disease caused by *Leishmania* parasites, with current treatments being toxic, expensive, and facing resistance.
  • Bacteriocins, like enterocin AS-48, are antimicrobial peptides with potential antiprotozoal activity, but minimal domains against *Leishmania* are unexplored.

Purpose of the Study:

  • To explore the antileishmanial potential of minimal bioactive domains of AS-48 bacteriocins.
  • To rationally design and synthesize peptide variants to enhance membrane penetration and efficacy against *Leishmania* parasites.

Main Methods:

  • Designed peptide libraries based on AS-48 minimal domains, modifying charge, hydrophobicity, and dipole moment.
  • Synthesized 480 peptide variants and screened them for antileishmanial activity against *Leishmania donovani* axenic and intracellular amastigotes.
  • Assessed peptide variants for IC50 values and in vitro host cell toxicity.

Main Results:

  • 172 peptide variants showed IC50 < 20 μM against axenic amastigotes, with 60 in the nanomolar range.
  • Nine peptide variants demonstrated potent activity (<4 μM IC50) against intracellular amastigotes with limited host cell toxicity.
  • Engineered minimal bacteriocin domains showed increased membrane penetration against *Leishmania* spp.

Conclusions:

  • Rationally designed minimal AS-48 bacteriocin domains can be effective antileishmanial agents.
  • These peptides hold promise for developing novel therapies against leishmaniasis with reduced host cytotoxicity.
  • Bacteriocin-based peptides represent a promising new avenue for treating neglected tropical diseases like leishmaniasis.