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Inhibition of ATP synthase reverse activity restores energy homeostasis in mitochondrial pathologies

The maintenance of cellular function relies on the close regulation of adenosine triphosphate (ATP) synthesis and hydrolysis. ATP hydrolysis by mitochondrial ATP Synthase (CV) is induced by loss of proton motive force and inhibited by the mitochondrial protein ATPase inhibitor (ATPIF1). The extent o...

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Autores principales: Acin‐Perez, Rebeca, Benincá, Cristiane, Fernandez del Rio, Lucia, Shu, Cynthia, Baghdasarian, Siyouneh, Zanette, Vanessa, Gerle, Christoph, Jiko, Chimari, Khairallah, Ramzi, Khan, Shaharyar, Rincon Fernandez Pacheco, David, Shabane, Byourak, Erion, Karel, Masand, Ruchi, Dugar, Sundeep, Ghenoiu, Cristina, Schreiner, George, Stiles, Linsey, Liesa, Marc, Shirihai, Orian S
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10183817/
https://www.ncbi.nlm.nih.gov/pubmed/36912136
http://dx.doi.org/10.15252/embj.2022111699
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author Acin‐Perez, Rebeca
Benincá, Cristiane
Fernandez del Rio, Lucia
Shu, Cynthia
Baghdasarian, Siyouneh
Zanette, Vanessa
Gerle, Christoph
Jiko, Chimari
Khairallah, Ramzi
Khan, Shaharyar
Rincon Fernandez Pacheco, David
Shabane, Byourak
Erion, Karel
Masand, Ruchi
Dugar, Sundeep
Ghenoiu, Cristina
Schreiner, George
Stiles, Linsey
Liesa, Marc
Shirihai, Orian S
author_facet Acin‐Perez, Rebeca
Benincá, Cristiane
Fernandez del Rio, Lucia
Shu, Cynthia
Baghdasarian, Siyouneh
Zanette, Vanessa
Gerle, Christoph
Jiko, Chimari
Khairallah, Ramzi
Khan, Shaharyar
Rincon Fernandez Pacheco, David
Shabane, Byourak
Erion, Karel
Masand, Ruchi
Dugar, Sundeep
Ghenoiu, Cristina
Schreiner, George
Stiles, Linsey
Liesa, Marc
Shirihai, Orian S
author_sort Acin‐Perez, Rebeca
collection PubMed
description The maintenance of cellular function relies on the close regulation of adenosine triphosphate (ATP) synthesis and hydrolysis. ATP hydrolysis by mitochondrial ATP Synthase (CV) is induced by loss of proton motive force and inhibited by the mitochondrial protein ATPase inhibitor (ATPIF1). The extent of CV hydrolytic activity and its impact on cellular energetics remains unknown due to the lack of selective hydrolysis inhibitors of CV. We find that CV hydrolytic activity takes place in coupled intact mitochondria and is increased by respiratory chain defects. We identified (+)‐Epicatechin as a selective inhibitor of ATP hydrolysis that binds CV while preventing the binding of ATPIF1. In cells with Complex‐III deficiency, we show that inhibition of CV hydrolytic activity by (+)‐Epichatechin is sufficient to restore ATP content without restoring respiratory function. Inhibition of CV–ATP hydrolysis in a mouse model of Duchenne Muscular Dystrophy is sufficient to improve muscle force without any increase in mitochondrial content. We conclude that the impact of compromised mitochondrial respiration can be lessened using hydrolysis‐selective inhibitors of CV.
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spelling pubmed-101838172023-05-16 Inhibition of ATP synthase reverse activity restores energy homeostasis in mitochondrial pathologies Acin‐Perez, Rebeca Benincá, Cristiane Fernandez del Rio, Lucia Shu, Cynthia Baghdasarian, Siyouneh Zanette, Vanessa Gerle, Christoph Jiko, Chimari Khairallah, Ramzi Khan, Shaharyar Rincon Fernandez Pacheco, David Shabane, Byourak Erion, Karel Masand, Ruchi Dugar, Sundeep Ghenoiu, Cristina Schreiner, George Stiles, Linsey Liesa, Marc Shirihai, Orian S EMBO J Articles The maintenance of cellular function relies on the close regulation of adenosine triphosphate (ATP) synthesis and hydrolysis. ATP hydrolysis by mitochondrial ATP Synthase (CV) is induced by loss of proton motive force and inhibited by the mitochondrial protein ATPase inhibitor (ATPIF1). The extent of CV hydrolytic activity and its impact on cellular energetics remains unknown due to the lack of selective hydrolysis inhibitors of CV. We find that CV hydrolytic activity takes place in coupled intact mitochondria and is increased by respiratory chain defects. We identified (+)‐Epicatechin as a selective inhibitor of ATP hydrolysis that binds CV while preventing the binding of ATPIF1. In cells with Complex‐III deficiency, we show that inhibition of CV hydrolytic activity by (+)‐Epichatechin is sufficient to restore ATP content without restoring respiratory function. Inhibition of CV–ATP hydrolysis in a mouse model of Duchenne Muscular Dystrophy is sufficient to improve muscle force without any increase in mitochondrial content. We conclude that the impact of compromised mitochondrial respiration can be lessened using hydrolysis‐selective inhibitors of CV. John Wiley and Sons Inc. 2023-03-13 /pmc/articles/PMC10183817/ /pubmed/36912136 http://dx.doi.org/10.15252/embj.2022111699 Text en © 2023 The Authors. Published under the terms of the CC BY 4.0 license https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Acin‐Perez, Rebeca
Benincá, Cristiane
Fernandez del Rio, Lucia
Shu, Cynthia
Baghdasarian, Siyouneh
Zanette, Vanessa
Gerle, Christoph
Jiko, Chimari
Khairallah, Ramzi
Khan, Shaharyar
Rincon Fernandez Pacheco, David
Shabane, Byourak
Erion, Karel
Masand, Ruchi
Dugar, Sundeep
Ghenoiu, Cristina
Schreiner, George
Stiles, Linsey
Liesa, Marc
Shirihai, Orian S
Inhibition of ATP synthase reverse activity restores energy homeostasis in mitochondrial pathologies
title Inhibition of ATP synthase reverse activity restores energy homeostasis in mitochondrial pathologies
title_full Inhibition of ATP synthase reverse activity restores energy homeostasis in mitochondrial pathologies
title_fullStr Inhibition of ATP synthase reverse activity restores energy homeostasis in mitochondrial pathologies
title_full_unstemmed Inhibition of ATP synthase reverse activity restores energy homeostasis in mitochondrial pathologies
title_short Inhibition of ATP synthase reverse activity restores energy homeostasis in mitochondrial pathologies
title_sort inhibition of atp synthase reverse activity restores energy homeostasis in mitochondrial pathologies
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10183817/
https://www.ncbi.nlm.nih.gov/pubmed/36912136
http://dx.doi.org/10.15252/embj.2022111699
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