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Evaluation of the Activities of Pyrimethamine Analogs against Plasmodium vivax and Plasmodium falciparum Dihydrofolate Reductase-Thymidylate Synthase Using In Vitro Enzyme Inhibition and Bacterial Complement
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ABSTRACT
Pyrimethamine analogs were examined as potential agents against vivax malaria using a bacterial surrogate system carrying
Plasmodium vivax
dihydrofolate reductase-thymidylate synthase (PvDHFR-TS), in which the PvDHFR complemented chemically knocked out host dihydrofolate reductase. The system was initially tested with
P. falciparum
dihydrofolate reductase-thymidylate synthase and was found to have good correlation with the parasite-based system. The 50% inhibitory concentrations derived from PvDHFR-TS-dependent bacteria were correlated with their corresponding inhibition constants (
K
i
) from an enzyme inhibition assay, pointing to the likelihood that the potent enzyme inhibitors will also have potent antimalarial activities. Active compounds against both wild-type and S58R S117N (SP21) double-mutant
P. vivax
include analogs with structures which can avert a steric clash with the asparagine (S117N) side chain of the mutant, similar to those found for homologous
Plasmodium falciparum
mutants, raising the possibility that the same compounds can be developed against both types of antifolate-resistant malaria. This rapid and convenient drug screening system should be useful for development of new antifolates against
P. vivax
, for which a continuous culture system is not yet available.
Title: Evaluation of the Activities of Pyrimethamine Analogs against
Plasmodium vivax
and
Plasmodium falciparum
Dihydrofolate Reductase-Thymidylate Synthase Using In Vitro Enzyme Inhibition and Bacterial Complement
Description:
ABSTRACT
Pyrimethamine analogs were examined as potential agents against vivax malaria using a bacterial surrogate system carrying
Plasmodium vivax
dihydrofolate reductase-thymidylate synthase (PvDHFR-TS), in which the PvDHFR complemented chemically knocked out host dihydrofolate reductase.
The system was initially tested with
P.
falciparum
dihydrofolate reductase-thymidylate synthase and was found to have good correlation with the parasite-based system.
The 50% inhibitory concentrations derived from PvDHFR-TS-dependent bacteria were correlated with their corresponding inhibition constants (
K
i
) from an enzyme inhibition assay, pointing to the likelihood that the potent enzyme inhibitors will also have potent antimalarial activities.
Active compounds against both wild-type and S58R S117N (SP21) double-mutant
P.
vivax
include analogs with structures which can avert a steric clash with the asparagine (S117N) side chain of the mutant, similar to those found for homologous
Plasmodium falciparum
mutants, raising the possibility that the same compounds can be developed against both types of antifolate-resistant malaria.
This rapid and convenient drug screening system should be useful for development of new antifolates against
P.
vivax
, for which a continuous culture system is not yet available.
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