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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

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 ‘...

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Autores principales: Barnes, Claudia B. G., Dans, Madeline G., Jonsdottir, Thorey K., Crabb, Brendan S., Gilson, Paul R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9747762/
https://www.ncbi.nlm.nih.gov/pubmed/36530423
http://dx.doi.org/10.3389/fcimb.2022.1060202
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author Barnes, Claudia B. G.
Dans, Madeline G.
Jonsdottir, Thorey K.
Crabb, Brendan S.
Gilson, Paul R.
author_facet Barnes, Claudia B. G.
Dans, Madeline G.
Jonsdottir, Thorey K.
Crabb, Brendan S.
Gilson, Paul R.
author_sort Barnes, Claudia B. G.
collection PubMed
description 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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spelling pubmed-97477622022-12-15 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 Barnes, Claudia B. G. Dans, Madeline G. Jonsdottir, Thorey K. Crabb, Brendan S. Gilson, Paul R. Front Cell Infect Microbiol Cellular and Infection Microbiology 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. Frontiers Media S.A. 2022-11-30 /pmc/articles/PMC9747762/ /pubmed/36530423 http://dx.doi.org/10.3389/fcimb.2022.1060202 Text en Copyright © 2022 Barnes, Dans, Jonsdottir, Crabb and Gilson https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cellular and Infection Microbiology
Barnes, Claudia B. G.
Dans, Madeline G.
Jonsdottir, Thorey K.
Crabb, Brendan S.
Gilson, Paul R.
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
title 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
title_full 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
title_fullStr 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
title_full_unstemmed 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
title_short 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
title_sort 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
topic Cellular and Infection Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9747762/
https://www.ncbi.nlm.nih.gov/pubmed/36530423
http://dx.doi.org/10.3389/fcimb.2022.1060202
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