Journal of Cell Science · 2015 · 114 citations · 47 references
Current first-line artemisinin antimalarials are threatened by the emergence of resistant Plasmodium falciparum. Decreased sensitivity is evident in the initial (early ring) stage of intraerythrocytic development, meaning that it is crucial to understand the action of artemisinins at this stage. Here, we examined the roles of iron (Fe) ions and haem in artemisinin activation in early rings using Fe ion chelators and a specific haemoglobinase inhibitor (E64d). Quantitative modelling of the antagonism accounted for its complex dependence on the chemical features of the artemisinins and on the drug exposure time, and showed that almost all artemisinin activity in early rings (>80%) is due to haem-mediated activation. The surprising implication that haemoglobin uptake and digestion is active in early rings is supported by identification of active haemoglobinases (falcipains) at this stage. Genetic down-modulation of the expression of the two main cysteine protease haemoglobinases, falcipains 2 and 3, renders early ring stage parasites resistant to artemisinins. This confirms the important role of haemoglobin-degrading falcipains in artemisinin activation, and shows that changes in the rate of artemisinin activation could mediate high-level artemisinin resistance.
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Weltgesundheitsorganisation · 2005 · 3.8K citations
World Malaria Report, Emerging Infectious Diseases, Global Health +6
A molecular marker of artemisinin-resistant Plasmodium falciparum malaria
Frédéric Ariey, Benoît Witkowski, Chanaki Amaratunga et al. · Nature · 2013 · 2.1K citations · Full text
Artemisinins target the SERCA of Plasmodium falciparum
Ursula Eckstein‐Ludwig, Richard Webb, Iris D. A. van Goethem et al. · Nature · 2003 · 1K citations