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Triazole substitution of a labile amide bond stabilizes pantothenamides and improves their antiplasmodial potency

  • Vanessa M. Howieson
  • , Elisa Tran
  • , Annabelle Hoegl
  • , Han Ling Fam
  • , Jonathan Fu
  • , Kate Sivonen
  • , Xiao Xuan Li
  • , Karine Auclair*
  • , Kevin J. Saliba
  • *Corresponding author for this work

    Research output: Contribution to journalArticlepeer-review

    29 Citations (Scopus)

    Abstract

    The biosynthesis of coenzyme A (CoA) from pantothenate and the utilization of CoA in essential biochemical pathways represent promising antimalarial drug targets. Pantothenamides, amide derivatives of pantothenate, have potential as antimalarials, but a serum enzyme called pantetheinase degrades pantothenamides, rendering them inactive in vivo. In this study, we characterize a series of 19 compounds that mimic pantothenamides with a stable triazole group instead of the labile amide. Two of these pantothenamides are active against the intraerythrocytic stage parasite with 50% inhibitory concentrations (IC50s) of ∼50 nM, and three others have submicromolar IC50s. We show that the compounds target CoA biosynthesis and/or utilization. We investigated one of the compounds for its ability to interact with the Plasmodium falciparum pantothenate kinase, the first enzyme involved in the conversion of pantothenate to CoA, and show that the compound inhibits the phosphorylation of [14C]pantothenate by the P. falciparum pantothenate kinase, but the inhibition does not correlate with antiplasmodial activity. Furthermore, the compounds are not toxic to human cells and, importantly, are not degraded by pantetheinase.

    Original languageEnglish
    Pages (from-to)7146-7152
    Number of pages7
    JournalAntimicrobial Agents and Chemotherapy
    Volume60
    Issue number12
    DOIs
    Publication statusPublished - Dec 2016

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