Metabolic Dysregulation Induced in Plasmodium falciparum by Dihydroartemisinin and Other Front-Line Antimalarial Drugs

被引:48
作者
Cobbold, Simon A. [1 ]
Chua, Hwa H. [1 ]
Nijagal, Brunda [2 ]
Creek, Darren J. [1 ,3 ]
Ralph, Stuart A. [1 ]
McConville, Malcolm J. [1 ,2 ]
机构
[1] Univ Melbourne, Dept Biochem & Mol Biol, Parkville, Vic 3052, Australia
[2] Univ Melbourne, Metab Australia Mol Sci & Biotechnol Inst Bio21, Parkville, Vic 3052, Australia
[3] Monash Univ, Monash Inst Pharmaceut Sci, Drug Delivery Disposit & Dynam, Parkville, Vic, Australia
基金
英国医学研究理事会; 澳大利亚国家健康与医学研究理事会;
关键词
Plasmodium; malaria; antimalarial; artemisinin; metabolomics; chloroquine; drug screening; metabolite; torin; atovaquone; MITOCHONDRIAL ELECTRON-TRANSPORT; MALARIA; ATOVAQUONE; ARTEMISININ; RESISTANCE; MECHANISM; CYCLOGUANIL; PYRIMETHAMINE; INHIBITION; GENERATION;
D O I
10.1093/infdis/jiv372
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Detailed information on the mode of action of antimalarial drugs can be used to improve existing drugs, identify new drug targets, and understand the basis of drug resistance. In this study we describe the use of a time-resolved, mass spectrometry ( MS)-based metabolite profiling approach to map the metabolic perturbations induced by a panel of clinical antimalarial drugs and inhibitors on Plasmodium falciparum asexual blood stages. Drug-induced changes in metabolite levels in P. falciparum-infected erythrocytes were monitored over time using gas chromatography-MS and liquid chromatography-MS and changes in specific metabolic fluxes confirmed by nonstationary [C-13]-glucose labeling. Dihydroartemisinin ( DHA) was found to disrupt hemoglobin catabolism within 1 hour of exposure, resulting in a transient decrease in hemoglobin-derived peptides. Unexpectedly, it also disrupted pyrimidine biosynthesis, resulting in increased [C-13]-glucose flux toward malate production, potentially explaining the susceptibility of P. falciparum to DHA during early blood-stage development. Unique metabolic signatures were also found for atovaquone, chloroquine, proguanil, cycloguanil and methylene blue. We also show that this approach can be used to identify the mode of action of novel antimalarials, such as the compound Torin 2, which inhibits hemoglobin catabolism.
引用
收藏
页码:276 / 286
页数:11
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