4.7 Article

PfATP4 inhibitors in the Medicines for Malaria Venture Malaria Box and Pathogen Box block the schizont-to-ring transition by inhibiting egress rather than invasion

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fcimb.2022.1060202

关键词

Plasmodium falciparum; malaria; PfATP4; sodium ions; egress; invasion; Malaria Box; Pathogen Box

资金

  1. Victorian Operational Infrastructure Support Program
  2. National Health and Medical Research Council [APP2001073, APP1185354, 119780521]
  3. Australian Government Research Training Scholarship
  4. Melbourne Research Scholarship

向作者/读者索取更多资源

Research has shown that certain PfATP4 inhibitors can prevent malaria parasites from escaping host red blood cells or entering new host cells. These compounds inhibit parasite egress by blocking the activation of protein kinase G, and there is a direct link between egress and the function of PfATP4. Additionally, these inhibitors can induce host cell lysis before parasite replication is complete.
The cation efflux pump Plasmodium falciparum ATPase 4 (PfATP4) maintains Na+ homeostasis in malaria parasites and has been implicated in the mechanism of action of many structurally diverse antimalarial agents, including >7% of the antimalarial compounds in the Medicines for Malaria Venture's 'Malaria Box' and 'Pathogen Box'. Recent screens of the 'Malaria Box' and 'Pathogen Box' revealed that many PfATP4 inhibitors prevent parasites from exiting their host red blood cell (egress) or entering new host cells (invasion), suggesting that these compounds may have additional molecular targets involved in egress or invasion. Here, we demonstrate that five PfATP4 inhibitors reduce egress but not invasion. These compounds appear to inhibit egress by blocking the activation of protein kinase G, an enzyme that, once stimulated, rapidly activates parasite egress. We establish a direct link between egress and PfATP4 function by showing that the inhibition of egress is attenuated in a Na+-depleted environment and in parasites with a mutation in pfatp4. Finally, we show that PfATP4 inhibitors induce host cell lysis when administered prior to the completion of parasite replication. Since host cell lysis mimics egress but is not followed by invasion, this phenomenon likely explains why several PfATP4 inhibitors were previously classified as invasion inhibitors. Collectively, our results confirm that PfATP4-mediated Na+ efflux is critical to the regulation of parasite egress.

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