Isomerization of antimalarial drug WR99210 explains its inactivity in a commercial stock

Author:

Remcho T. ParksORCID,Guggilapu Sravanthi D.ORCID,Cruz Phillip,Nardone Glenn A.,Heffernan Gavin,O’Connor Robert D.,Bewley Carole A.ORCID,Wellems Thomas E.ORCID,Lane Kristin D.ORCID

Abstract

ABSTRACTWR99210, a former antimalarial drug candidate now widely used for the selection of Plasmodium transfectants, selectively targets the parasite dihydrofolate reductase thymidine synthase bifunctional enzyme (DHFR-TS) but not human DHFR, which is not fused with TS. Accordingly, WR99210 and plasmids expressing human dhfr have become valued tools for the genetic modification of parasites in the laboratory. Concerns over the ineffectiveness of WR99210 from some sources encouraged us to investigate the biological and chemical differences of supplies from two different companies (compounds 1 and 2). Compound 1 proved effective at low nanomolar concentrations against Plasmodium falciparum parasites, whereas compound 2 was ineffective even at micromolar concentrations. Intact and fragmented mass spectra indicated identical molecular formulae of the unprotonated (free base) structures of 1 and 2; however, the compounds displayed differences by thin layer chromatography, reverse phase high performance liquid chromatography, and ultraviolet-visible spectroscopy, indicating important isomeric differences. Structural evaluations by 1H, 13C, and 15N nuclear magnetic resonance spectroscopy confirmed 1 as WR99210 and 2 as an isomeric dihydrotriazine. Induced fit, computational docking models showed that 1 binds tightly and specifically in the P. falciparum DHFR active site whereas 2 fits poorly to the active site in loose and varied orientations. Stocks and concentrates of WR99210 should be monitored for the presence of isomer 2, particularly when they are not supplied as the hydrochloride salt or are exposed to basic conditions that can promote isomerization. Absorption spectroscopy may serve for assays of the unrearranged and rearranged triazines.

Publisher

Cold Spring Harbor Laboratory

Reference31 articles.

1. The in vitro activity of experimental antimalarial compounds against strains of Plasmodium falciparum with varying degrees of sensitivity to pyrimethamine and chloroquine;In World Health Organization, Chemotherapy of malaria and resistance to antimalarials, Report of a WHO scientific group, World Health Organ Tech Rep Ser No,1973

2. Purine and Pyrimidine Pathways as Targets in Plasmodium falciparum

3. Transformation with human dihydrofolate reductase renders malaria parasites insensitive to WR99210 but does not affect the intrinsic activity of proguanil

4. The cardiovascular effects of two new triazine antimalarials, BRL 50216 (Clociguanil) and BRL 6231;Toxicol Appl Pharmacol,1974

5. Plasmodium falciparum and Plasmodium vivax infections in the owl monkey (Aotus trivirgatus). III. Methods employed in the search for new blood schizonticidal drugs;Am J Trop Med Hyg,1978

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