Genetic mapping of targets mediating differential chemical phenotypes in Plasmodium falciparum
Open Access
- 6 September 2009
- journal article
- research article
- Published by Springer Nature in Nature Chemical Biology
- Vol. 5 (10) , 765-771
- https://doi.org/10.1038/nchembio.215
Abstract
Studies of gene function and molecular mechanisms in Plasmodium falciparum are hampered by difficulties in characterizing and measuring phenotypic differences between individual parasites. We screened seven parasite lines for differences in responses to 1,279 bioactive chemicals. Hundreds of compounds were active in inhibiting parasite growth; 607 differential chemical phenotypes, defined as pairwise IC50 differences of fivefold or more between parasite lines, were cataloged. We mapped major determinants for three differential chemical phenotypes between the parents of a genetic cross, and we identified target genes by fine mapping and testing the responses of parasites in which candidate genes were genetically replaced with mutant alleles. Differential sensitivity to dihydroergotamine methanesulfonate (1), a serotonin receptor antagonist, was mapped to a gene encoding the homolog of human P-glycoprotein (PfPgh-1). This study identifies new leads for antimalarial drugs and demonstrates the utility of a high-throughput chemical genomic strategy for studying malaria traits.Keywords
This publication has 46 references indexed in Scilit:
- Evidence of Artemisinin-Resistant Malaria in Western CambodiaNew England Journal of Medicine, 2008
- In silicoactivity profiling reveals the mechanism of action of antimalarials discovered in a high-throughput screenProceedings of the National Academy of Sciences, 2008
- Erythrocyte Binding Protein PfRH5 Polymorphisms Determine Species-Specific Pathways of Plasmodium falciparum InvasionCell Host & Microbe, 2008
- Genome variation and evolution of the malaria parasite Plasmodium falciparumNature Genetics, 2006
- A genome-wide map of diversity in Plasmodium falciparumNature Genetics, 2006
- Quantitative high-throughput screening: A titration-based approach that efficiently identifies biological activities in large chemical librariesProceedings of the National Academy of Sciences, 2006
- Searching for New Antimalarial Therapeutics amongst Known DrugsChemical Biology & Drug Design, 2006
- The global distribution of clinical episodes of Plasmodium falciparum malariaNature, 2005
- Genome sequence of the human malaria parasite Plasmodium falciparumNature, 2002
- Human Malaria Parasites in Continuous CultureScience, 1976