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Mitochondrion of the Trypanosoma brucei long slender bloodstream form is capable of ATP production by substrate-level phosphorylation

The long slender bloodstream form Trypanosoma brucei maintains its essential mitochondrial membrane potential (ΔΨm) through the proton-pumping activity of the F(o)F(1)-ATP synthase operating in the reverse mode. The ATP that drives this hydrolytic reaction has long been thought to be generated by gl...

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Autores principales: Taleva, Gergana, Husová, Michaela, Panicucci, Brian, Hierro-Yap, Carolina, Pineda, Erika, Biran, Marc, Moos, Martin, Šimek, Petr, Butter, Falk, Bringaud, Frédéric, Zíková, Alena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10593219/
https://www.ncbi.nlm.nih.gov/pubmed/37819951
http://dx.doi.org/10.1371/journal.ppat.1011699
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author Taleva, Gergana
Husová, Michaela
Panicucci, Brian
Hierro-Yap, Carolina
Pineda, Erika
Biran, Marc
Moos, Martin
Šimek, Petr
Butter, Falk
Bringaud, Frédéric
Zíková, Alena
author_facet Taleva, Gergana
Husová, Michaela
Panicucci, Brian
Hierro-Yap, Carolina
Pineda, Erika
Biran, Marc
Moos, Martin
Šimek, Petr
Butter, Falk
Bringaud, Frédéric
Zíková, Alena
author_sort Taleva, Gergana
collection PubMed
description The long slender bloodstream form Trypanosoma brucei maintains its essential mitochondrial membrane potential (ΔΨm) through the proton-pumping activity of the F(o)F(1)-ATP synthase operating in the reverse mode. The ATP that drives this hydrolytic reaction has long been thought to be generated by glycolysis and imported from the cytosol via an ATP/ADP carrier (AAC). Indeed, we demonstrate that AAC is the only carrier that can import ATP into the mitochondrial matrix to power the hydrolytic activity of the F(o)F(1)-ATP synthase. However, contrary to expectations, the deletion of AAC has no effect on parasite growth, virulence or levels of ΔΨ(m). This suggests that ATP is produced by substrate-level phosphorylation pathways in the mitochondrion. Therefore, we knocked out the succinyl-CoA synthetase (SCS) gene, a key mitochondrial enzyme that produces ATP through substrate-level phosphorylation in this parasite. Its absence resulted in changes to the metabolic landscape of the parasite, lowered virulence, and reduced mitochondrial ATP content. Strikingly, these SCS mutant parasites become more dependent on AAC as demonstrated by a 25-fold increase in their sensitivity to the AAC inhibitor, carboxyatractyloside. Since the parasites were able to adapt to the loss of SCS in culture, we also analyzed the more immediate phenotypes that manifest when SCS expression is rapidly suppressed by RNAi. Importantly, when performed under nutrient-limited conditions mimicking various host environments, SCS depletion strongly affected parasite growth and levels of ΔΨ(m). In totality, the data establish that the long slender bloodstream form mitochondrion is capable of generating ATP via substrate-level phosphorylation pathways.
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spelling pubmed-105932192023-10-24 Mitochondrion of the Trypanosoma brucei long slender bloodstream form is capable of ATP production by substrate-level phosphorylation Taleva, Gergana Husová, Michaela Panicucci, Brian Hierro-Yap, Carolina Pineda, Erika Biran, Marc Moos, Martin Šimek, Petr Butter, Falk Bringaud, Frédéric Zíková, Alena PLoS Pathog Research Article The long slender bloodstream form Trypanosoma brucei maintains its essential mitochondrial membrane potential (ΔΨm) through the proton-pumping activity of the F(o)F(1)-ATP synthase operating in the reverse mode. The ATP that drives this hydrolytic reaction has long been thought to be generated by glycolysis and imported from the cytosol via an ATP/ADP carrier (AAC). Indeed, we demonstrate that AAC is the only carrier that can import ATP into the mitochondrial matrix to power the hydrolytic activity of the F(o)F(1)-ATP synthase. However, contrary to expectations, the deletion of AAC has no effect on parasite growth, virulence or levels of ΔΨ(m). This suggests that ATP is produced by substrate-level phosphorylation pathways in the mitochondrion. Therefore, we knocked out the succinyl-CoA synthetase (SCS) gene, a key mitochondrial enzyme that produces ATP through substrate-level phosphorylation in this parasite. Its absence resulted in changes to the metabolic landscape of the parasite, lowered virulence, and reduced mitochondrial ATP content. Strikingly, these SCS mutant parasites become more dependent on AAC as demonstrated by a 25-fold increase in their sensitivity to the AAC inhibitor, carboxyatractyloside. Since the parasites were able to adapt to the loss of SCS in culture, we also analyzed the more immediate phenotypes that manifest when SCS expression is rapidly suppressed by RNAi. Importantly, when performed under nutrient-limited conditions mimicking various host environments, SCS depletion strongly affected parasite growth and levels of ΔΨ(m). In totality, the data establish that the long slender bloodstream form mitochondrion is capable of generating ATP via substrate-level phosphorylation pathways. Public Library of Science 2023-10-11 /pmc/articles/PMC10593219/ /pubmed/37819951 http://dx.doi.org/10.1371/journal.ppat.1011699 Text en © 2023 Taleva et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Taleva, Gergana
Husová, Michaela
Panicucci, Brian
Hierro-Yap, Carolina
Pineda, Erika
Biran, Marc
Moos, Martin
Šimek, Petr
Butter, Falk
Bringaud, Frédéric
Zíková, Alena
Mitochondrion of the Trypanosoma brucei long slender bloodstream form is capable of ATP production by substrate-level phosphorylation
title Mitochondrion of the Trypanosoma brucei long slender bloodstream form is capable of ATP production by substrate-level phosphorylation
title_full Mitochondrion of the Trypanosoma brucei long slender bloodstream form is capable of ATP production by substrate-level phosphorylation
title_fullStr Mitochondrion of the Trypanosoma brucei long slender bloodstream form is capable of ATP production by substrate-level phosphorylation
title_full_unstemmed Mitochondrion of the Trypanosoma brucei long slender bloodstream form is capable of ATP production by substrate-level phosphorylation
title_short Mitochondrion of the Trypanosoma brucei long slender bloodstream form is capable of ATP production by substrate-level phosphorylation
title_sort mitochondrion of the trypanosoma brucei long slender bloodstream form is capable of atp production by substrate-level phosphorylation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10593219/
https://www.ncbi.nlm.nih.gov/pubmed/37819951
http://dx.doi.org/10.1371/journal.ppat.1011699
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