4.5 Article

The Plasmodium falciparum ABC transporter ABCI3 confers parasite strain-dependent pleiotropic antimalarial drug resistance

期刊

CELL CHEMICAL BIOLOGY
卷 29, 期 5, 页码 824-+

出版社

CELL PRESS
DOI: 10.1016/j.chembiol.2021.06.006

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资金

  1. Medicines for Malaria Venture (MMV)
  2. NIH [R37 AI05234, R01 AI124678, R01 AI147628]
  3. Bill & Melinda Gates Foundation through the Grand Challenges Exploration initiative [OPP1162467]
  4. South African Technology Innovation Agency [MMV09/0002]
  5. South African Medical Research Council
  6. South African Research Chairs Initiative of the Department of Science and Innovation
  7. Bill & Melinda Gates Foundation [OPP1054480]
  8. Human Frontiers of Science Program
  9. MMV
  10. Bill and Melinda Gates Foundation [OPP1162467] Funding Source: Bill and Melinda Gates Foundation

向作者/读者索取更多资源

This study identifies the transporter ABCI3 and the chloroquine resistance transporter PfCRT as key players in drug resistance in Plasmodium falciparum. The mode of action of the compound imidazopyridine is attributed to inhibition of heme detoxification.
Widespread Plasmodium falciparum resistance to first-line antimalarials underscores the vital need to develop compounds with novel modes of action and identify new druggable targets. Here, we profile five compounds that potently inhibit P. falciparum asexual blood stages. Resistance selection studies with three carboxamide-containing compounds, confirmed by gene editing and conditional knockdowns, identify point mutations in the parasite transporter ABCI3 as the primary mediator of resistance. Selection studies with imidazopyridine or quinoline-carboxamide compounds also yield changes in ABCI3, this time through gene amplification. Imidazopyridine mode of action is attributed to inhibition of heme detoxification, as evidenced by cellular accumulation and heme fractionation assays. For the copy-number variation-selecting imidazopyridine and quinoline-carboxamide compounds, we find that resistance, manifesting as a biphasic concentration-response curve, can independently be mediated by mutations in the chloroquine resistance transporter PfCRT. These studies reveal the interconnectedness of P. falciparum transporters in overcoming drug pressure in different parasite strains.

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