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. 2008 Dec 12;283(50):35078-85.
doi: 10.1074/jbc.M804990200. Epub 2008 Oct 8.

"V体育2025版" Identification and characterization of small molecule inhibitors of Plasmodium falciparum dihydroorotate dehydrogenase

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VSports - Identification and characterization of small molecule inhibitors of Plasmodium falciparum dihydroorotate dehydrogenase

"VSports在线直播" Vishal Patel et al. J Biol Chem. .

Abstract

Plasmodium falciparum causes the most deadly form of malaria and accounts for over one million deaths annually. The malaria parasite is unable to salvage pyrimidines and relies on de novo biosynthesis for survival. Dihydroorotate dehydrogenase (DHOD), a mitochondrially localized flavoenzyme, catalyzes the rate-limiting step of this pathway and is therefore an attractive antimalarial chemotherapeutic target. Using a target-based high throughput screen, we have identified a series of potent, species-specific inhibitors of P. falciparum DHOD (pfDHOD) that are also efficacious against three cultured strains (3D7, HB3, and Dd2) of P. falciparum. The primary antimalarial mechanism of action of these compounds was confirmed to be inhibition of pfDHOD through a secondary assay with transgenic malaria parasites, and the structural basis for enzyme inhibition was explored through in silico structure-based docking and site-directed mutagenesis. Compound-mediated cytotoxicity was not observed with human dermal fibroblasts or renal epithelial cells VSports手机版. These data validate pfDHOD as an antimalarial drug target and provide chemical scaffolds with which to begin medicinal chemistry efforts. .

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"VSports" Figures

SCHEME 1.
SCHEME 1.
Reactions catalyzed by DHOD. In the first half of the redox reaction, l-DHO is oxidized by the FMN cofactor. The FMN prosthetic group is then reoxidized by fumarate or NAD+ in type 1 enzymes or CoQn in mitochondrial type 2 DHOD variants.
FIGURE 1.
FIGURE 1.
In silico docking of compound 3 and a structurally related analog (compound 8) within the A77 1726 binding pocket of pfDHOD. Maestro was used to calculate the molecular surface and electrostatic potential of the proposed binding pocket. A, indole moiety in compound 3 occupies a hydrophobic pocket and positions the electron-rich sulfur of the central thiofuran ring near an electron-deficient region of the pocket. Two hydrogen bonds are formed as follows: one from the carbonyl to Tyr-528 and another between the amide hydrogen and Gly-181. B, related analog 8 is an ineffective inhibitor of both pfDHOD activity and parasite proliferation. In the docking study, compound 8 is predicted to have a different conformation within the proposed binding pocket; the thiofuran is flipped 180°. In addition, the indole of compound 3 is replaced by a pyrazole, and the five-membered ring of the pyrazole only partially fills the hydrophobic pocket that was occupied by the indole of compound 3.

References

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