-
Assay Development and Identification of the First Plasmodium falciparum 7,8-dihydro-6-hydroxymethylpterin-pyrophosphokinase Inhibitors
- Back
Metadata
Document Title
Assay Development and Identification of the First Plasmodium falciparum 7,8-dihydro-6-hydroxymethylpterin-pyrophosphokinase Inhibitors
Author
Hoarau M, Suwanakitti N, Varatthan T, Thiabma R, Rattanajak R, Charoensetakul N, Redman EK, Khotavivattana T, Vilaivan T, Yuthavong Y, Kamchonwongpaisan S
Name from Authors Collection
Scopus Author ID
37003044500
Affiliations
National Science & Technology Development Agency - Thailand; National Center Genetic Engineering & Biotechnology (BIOTEC); Chulalongkorn University; Chulalongkorn University
Type
Article
Source Title
MOLECULES
Year
2022
Volume
27
Open Access
gold, Green Published
Publisher
MDPI
DOI
10.3390/molecules27113515
Format
Abstract
In the fight towards eradication of malaria, identifying compounds active against new drug targets constitutes a key approach. Plasmodium falciparum 7,8-dihydro-6-hydroxymethylpterin-pyrophosphokinase (PfHPPK) has been advanced as a promising target, as being part of the parasite essential folate biosynthesis pathway while having no orthologue in the human genome. However, no drug discovery efforts have been reported on this enzyme. In this study, we conducted a three-step screening of our in-house antifolate library against PfHPPK using a newly designed PfHPPK-GFP protein construct. Combining virtual screening, differential scanning fluorimetry and enzymatic assay, we identified 14 compounds active against PfHPPK. Compounds' binding modes were investigated by molecular docking, suggesting competitive binding with the HMDP substrate. Cytotoxicity and in vitro ADME properties of hit compounds were also assessed, showing good metabolic stability and low toxicity. The most active compounds displayed low micromolar IC50 against drug-resistant parasites. The reported hit compounds constitute a good starting point for inhibitor development against PfHPPK, as an alternative approach to tackle the malaria parasite.
Keyword
Antifolates | Drug discovery | enzyme inhibitors | HPPK | Malaria
Industrial Classification
Knowledge Taxonomy Level 1
Knowledge Taxonomy Level 2
Knowledge Taxonomy Level 3
Funding Sponsor
NSTDA Researcher Chair Grant [P1850116]; BIOTEC Platform Grant [P1951535]; National Science Foundation [NSF CHE-0850693]
License
CC BY
Rights
Authors
Publication Source
WOS