Target intelligence / Profile preview

Plasmodium falciparum dihydropteroate synthase (DHPS) (DHPS)

Target
DHPS
Molecular classification
Enzyme, Transferase
01

Overview

Plasmodium falciparum dihydropteroate synthase (DHPS) is a vital enzyme in the de novo folate biosynthetic pathway of the malaria parasite, where it exists as part of a bifunctional protein alongside hydroxymethyldihydropterin pyrophosphokinase (HPPK) [1, 8]. It catalyzes the condensation of 6-hydroxymethyl-7,8-dihydropterin pyrophosphate with p-aminobenzoic acid (pABA) to form 7,8-dihydropteroate, a precursor for tetrahydrofolate cofactors essential for DNA synthesis and amino acid metabolism [2, 4]. Because humans lack the DHPS enzyme and must obtain folate through their diet, it is a highly selective and effective target for antimalarial drugs such as sulfadoxine and dapsone [4, 7]. These drugs act as structural analogs of pABA, competitively inhibiting the enzyme and leading to a depletion of the parasite's folate pool [2, 14]. However, the clinical utility of DHPS inhibitors is severely challenged by the widespread emergence of point mutations in the dhps gene, such as A437G and K540E, which significantly reduce the binding affinity of sulfonamides and confer high levels of drug resistance [3, 15, 18].

Other names
Dihydropteroate synthetase7,8-dihydropteroate synthaseHydroxymethyldihydropterin pyrophosphokinase-dihydropteroate synthasePPPK-DHPSHPPK-DHPSFolate synthesis protein 1PfDHPS
02

Mechanism of action

Competitive inhibition of the p-aminobenzoic acid (pABA) binding site, which prevents the condensation of pABA with 6-hydroxymethyl-7,8-dihydropterin pyrophosphate, thereby blocking the synthesis of dihydropteroate.

03

Biological functions

Folate biosynthesisDe novo synthesis of 7,8-dihydropteroateDNA synthesisNucleotide metabolism
04

Disease associations

InfectionMalaria
05

Safety considerations

Rapid emergence of drug resistance through point mutationsCross-resistance among various sulfonamide and sulfone drugsParasitic folate salvage mechanisms reducing drug efficacyGeographic variability in mutation prevalence affecting treatment policy
06

Interacting drugs

Sulfadoxine

5 more in the full profile.

07

Biomarkers

dhps A437G mutationdhps K540E mutationdhps A581G mutationdhps S436A/F mutationdhps A613S/T mutationdhps I431V mutation

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