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

Microbiol Spectr. 2022-11; 
Hannah N Corman, Jessica N Ross, Francisco R Fields, Douglas A Shoue, Shaun W Lee, Mary Ann McDowell
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Peptide Synthesis … -enterocin, syn-safencin, syn-sordellicin, syn-larvacin, and syn-xiamencin, were designed based on these defined biophysical parameters and commercially synthesized by GenScript (… Get A Quote

Abstract

Leishmaniasis, a category I neglected tropical disease, is a group of diseases caused by the protozoan parasite species with a wide range of clinical manifestations. Current treatment options can be highly toxic and expensive, with drug relapse and the emergence of resistance. Bacteriocins, antimicrobial peptides ribosomally produced by bacteria, are a relatively new avenue for potential antiprotozoal drugs. Particular interest has been focused on enterocin AS-48, with previously proven efficacy against protozoan species, including spp. Sequential characterization of enterocin AS-48 has illustrated that antibacterial bioactivity is preserved in linearized, truncated forms; however, minimal domains of AS-48 ba... More

Keywords

AS-48, Leishmania, antileishmanial, antimicrobial peptides, antiparasitic agents, bacteriocins