Loading…

Open-source discovery of chemical leads for next-generation chemoprotective antimalarials

To discover leads for next-generation chemoprotective antimalarial drugs, we tested more than 500,000 compounds for their ability to inhibit liver-stage development of luciferase-expressing spp. parasites (681 compounds showed a half-maximal inhibitory concentration of less than 1 micromolar). Clust...

Full description

Saved in:
Bibliographic Details
Published in:Science (American Association for the Advancement of Science) 2018-12, Vol.362 (6419)
Main Authors: Antonova-Koch, Yevgeniya, Meister, Stephan, Abraham, Matthew, Luth, Madeline R, Ottilie, Sabine, Lukens, Amanda K, Sakata-Kato, Tomoyo, Vanaerschot, Manu, Owen, Edward, Jado Rodriguez, Juan Carlos, Maher, Steven P, Calla, Jaeson, Plouffe, David, Zhong, Yang, Chen, Kaisheng, Chaumeau, Victor, Conway, Amy J, McNamara, Case W, Ibanez, Maureen, Gagaring, Kerstin, Serrano, Fernando Neria, Eribez, Korina, Taggard, Cullin McLean, Cheung, Andrea L, Lincoln, Christie, Ambachew, Biniam, Rouillier, Melanie, Siegel, Dionicio, Nosten, François, Kyle, Dennis E, Gamo, Francisco-Javier, Zhou, Yingyao, Llinás, Manuel, Fidock, David A, Wirth, Dyann F, Burrows, Jeremy, Campo, Brice, Winzeler, Elizabeth A
Format: Article
Language:English
Subjects:
Citations: Items that this one cites
Items that cite this one
Online Access:Get full text
Tags: Add Tag
No Tags, Be the first to tag this record!
Description
Summary:To discover leads for next-generation chemoprotective antimalarial drugs, we tested more than 500,000 compounds for their ability to inhibit liver-stage development of luciferase-expressing spp. parasites (681 compounds showed a half-maximal inhibitory concentration of less than 1 micromolar). Cluster analysis identified potent and previously unreported scaffold families as well as other series previously associated with chemoprophylaxis. Further testing through multiple phenotypic assays that predict stage-specific and multispecies antimalarial activity distinguished compound classes that are likely to provide symptomatic relief by reducing asexual blood-stage parasitemia from those which are likely to only prevent malaria. Target identification by using functional assays, in vitro evolution, or metabolic profiling revealed 58 mitochondrial inhibitors but also many chemotypes possibly with previously unidentified mechanisms of action.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.aat9446