Two-Pronged Attack: Dual Inhibition of Plasmodium falciparum M1 and M17 Metalloaminopeptidases by a Novel Series of Hydroxamic Acid-Based Inhibitors
Author(s) -
Shailesh N. Mistry,
Nyssa Drinkwater,
Chiara Ruggeri,
Komagal Kannan Sivaraman,
Sasdekumar Loganathan,
Sabine Fletcher,
Marcin Drąg,
Alessandro Paiardini,
Vicky M. Avery,
Peter J. Scammells,
Sheena McGowan
Publication year - 2014
Publication title -
journal of medicinal chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.01
H-Index - 261
eISSN - 1520-4804
pISSN - 0022-2623
DOI - 10.1021/jm501323a
Subject(s) - plasmodium falciparum , antimalarial agent , artemisinin , malaria , hydroxamic acid , chemistry , mode of action , pharmacology , biology , biochemistry , stereochemistry , immunology
Plasmodium parasites, the causative agents of malaria, have developed resistance to most of our current antimalarial therapies, including artemisinin combination therapies which are widely described as our last line of defense. Antimalarial agents with a novel mode of action are urgently required. Two Plasmodium falciparum aminopeptidases, PfA-M1 and PfA-M17, play crucial roles in the erythrocytic stage of infection and have been validated as potential antimalarial targets. Using compound-bound crystal structures of both enzymes, we have used a structure-guided approach to develop a novel series of inhibitors capable of potent inhibition of both PfA-M1 and PfA-M17 activity and parasite growth in culture. Herein we describe the design, synthesis, and evaluation of a series of hydroxamic acid-based inhibitors and demonstrate the compounds to be exciting new leads for the development of novel antimalarial therapeutics.
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