Abstract
Apicomplexans are widespread parasites of humans and other animals, and include the causative agents of malaria (Plasmodium species) and toxoplasmosis (Toxoplasma gondii). Existing anti-apicomplexan therapies are beset with issues around drug resistance and toxicity, and new treatment options are needed. The mitochondrial electron transport chain (ETC) is one of the few processes that has been validated as a drug target in apicomplexans. To identify new inhibitors of the apicomplexan ETC, we developed a Seahorse XFe96 flux analyzer approach to screen the 400 compounds contained within the Medicines for Malaria Venture ‘Pathogen Box’ for ETC inhibition. We identified six chemically diverse, on-target inhibitors of the ETC in T. gondii, at least four of which also target the ETC of Plasmodium falciparum. Two of the identified compounds (MMV024937 and MMV688853) represent novel ETC inhibitor chemotypes. MMV688853 belongs to a compound class, the aminopyrazole carboxamides, that were shown previously to target a kinase with a key role in parasite invasion of host cells. Our data therefore reveal that MMV688853 has dual targets in apicomplexans. We further developed our approach to pinpoint the molecular targets of these inhibitors, demonstrating that all target Complex III of the ETC, with MMV688853 targeting the ubiquinone reduction (Qi) site of the complex. Most of the compounds we identified remain effective inhibitors of parasites that are resistant to Complex III inhibitors that are in clinical use or development, indicating that they could be used in treating drug resistant parasites. In sum, we have developed a versatile, scalable approach to screen for compounds that target the ETC in apicomplexan parasites, and used this to identify and characterize novel inhibitors.
| Original language | English |
|---|---|
| Article number | e1011517 |
| Number of pages | 40 |
| Journal | PLoS Pathogens |
| Volume | 19 |
| Issue number | 7 |
| DOIs | |
| Publication status | Published - Jul 2023 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 3 Good Health and Well-being
Research output
- 8 Citations
- 1 Article
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A screen of drug-like molecules identifies chemically diverse electron transport chain inhibitors in apicomplexan parasites
Hayward, J. A., Makota, F. V., Cihalova, D., Rajendran, E., Zwahlen, S. M., Shuttleworth, L., Wiedemann, U., Spry, C., Saliba, K. J., Maier, A. G. & van Dooren, G. G., 14 Feb 2022, bioRxiv, 2022 65 p.Research output: Contribution to specialist publication › Article › Research
Projects
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Signalling pathways for sexual differentiation of apicomplexan parasites
Maier, A. G. (Primary Chief Investigator (PCI)), Doerig, C. (Chief Investigator (CI)) & Tobin, A. B. (Chief Investigator (CI))
Project: Research
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