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ADP Protects Cardiac Mitochondria under Severe Oxidative Stress

ADP is not only a key substrate for ATP generation, but also a potent inhibitor of mitochondrial permeability transition pore (mPTP). In this study, we assessed how oxidative stress affects the potency of ADP as an mPTP inhibitor and whether its reduction of reactive oxygen species (ROS) production...

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Autores principales: Sokolova, Niina, Pan, Shi, Provazza, Sarah, Beutner, Gisela, Vendelin, Marko, Birkedal, Rikke, Sheu, Shey-Shing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3862761/
https://www.ncbi.nlm.nih.gov/pubmed/24349464
http://dx.doi.org/10.1371/journal.pone.0083214
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author Sokolova, Niina
Pan, Shi
Provazza, Sarah
Beutner, Gisela
Vendelin, Marko
Birkedal, Rikke
Sheu, Shey-Shing
author_facet Sokolova, Niina
Pan, Shi
Provazza, Sarah
Beutner, Gisela
Vendelin, Marko
Birkedal, Rikke
Sheu, Shey-Shing
author_sort Sokolova, Niina
collection PubMed
description ADP is not only a key substrate for ATP generation, but also a potent inhibitor of mitochondrial permeability transition pore (mPTP). In this study, we assessed how oxidative stress affects the potency of ADP as an mPTP inhibitor and whether its reduction of reactive oxygen species (ROS) production might be involved. We determined quantitatively the effects of ADP on mitochondrial Ca(2+) retention capacity (CRC) until the induction of mPTP in normal and stressed isolated cardiac mitochondria. We used two models of chronic oxidative stress (old and diabetic mice) and two models of acute oxidative stress (ischemia reperfusion (IR) and tert-butyl hydroperoxide (t-BH)). In control mitochondria, the CRC was 344 ± 32 nmol/mg protein. 500 μmol/L ADP increased CRC to 774 ± 65 nmol/mg protein. This effect of ADP seemed to relate to its concentration as 50 μmol/L had a significantly smaller effect. Also, oligomycin, which inhibits the conversion of ADP to ATP by F(0)F(1)ATPase, significantly increased the effect of 50 μmol/L ADP. Chronic oxidative stress did not affect CRC or the effect of 500 μmol/L ADP. After IR or t-BH exposure, CRC was drastically reduced to 1 ± 0.2 and 32 ± 4 nmol/mg protein, respectively. Surprisingly, ADP increased the CRC to 447 ± 105 and 514 ± 103 nmol/mg protein in IR and t-BH, respectively. Thus, it increased CRC by the same amount as in control. In control mitochondria, ADP decreased both substrate and Ca(2+)-induced increase of ROS. However, in t-BH mitochondria the effect of ADP on ROS was relatively small. We conclude that ADP potently restores CRC capacity in severely stressed mitochondria. This effect is most likely not related to a reduction in ROS production. As the effect of ADP relates to its concentration, increased ADP as occurs in the pathophysiological situation may protect mitochondrial integrity and function.
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spelling pubmed-38627612013-12-17 ADP Protects Cardiac Mitochondria under Severe Oxidative Stress Sokolova, Niina Pan, Shi Provazza, Sarah Beutner, Gisela Vendelin, Marko Birkedal, Rikke Sheu, Shey-Shing PLoS One Research Article ADP is not only a key substrate for ATP generation, but also a potent inhibitor of mitochondrial permeability transition pore (mPTP). In this study, we assessed how oxidative stress affects the potency of ADP as an mPTP inhibitor and whether its reduction of reactive oxygen species (ROS) production might be involved. We determined quantitatively the effects of ADP on mitochondrial Ca(2+) retention capacity (CRC) until the induction of mPTP in normal and stressed isolated cardiac mitochondria. We used two models of chronic oxidative stress (old and diabetic mice) and two models of acute oxidative stress (ischemia reperfusion (IR) and tert-butyl hydroperoxide (t-BH)). In control mitochondria, the CRC was 344 ± 32 nmol/mg protein. 500 μmol/L ADP increased CRC to 774 ± 65 nmol/mg protein. This effect of ADP seemed to relate to its concentration as 50 μmol/L had a significantly smaller effect. Also, oligomycin, which inhibits the conversion of ADP to ATP by F(0)F(1)ATPase, significantly increased the effect of 50 μmol/L ADP. Chronic oxidative stress did not affect CRC or the effect of 500 μmol/L ADP. After IR or t-BH exposure, CRC was drastically reduced to 1 ± 0.2 and 32 ± 4 nmol/mg protein, respectively. Surprisingly, ADP increased the CRC to 447 ± 105 and 514 ± 103 nmol/mg protein in IR and t-BH, respectively. Thus, it increased CRC by the same amount as in control. In control mitochondria, ADP decreased both substrate and Ca(2+)-induced increase of ROS. However, in t-BH mitochondria the effect of ADP on ROS was relatively small. We conclude that ADP potently restores CRC capacity in severely stressed mitochondria. This effect is most likely not related to a reduction in ROS production. As the effect of ADP relates to its concentration, increased ADP as occurs in the pathophysiological situation may protect mitochondrial integrity and function. Public Library of Science 2013-12-13 /pmc/articles/PMC3862761/ /pubmed/24349464 http://dx.doi.org/10.1371/journal.pone.0083214 Text en © 2013 Sokolova et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sokolova, Niina
Pan, Shi
Provazza, Sarah
Beutner, Gisela
Vendelin, Marko
Birkedal, Rikke
Sheu, Shey-Shing
ADP Protects Cardiac Mitochondria under Severe Oxidative Stress
title ADP Protects Cardiac Mitochondria under Severe Oxidative Stress
title_full ADP Protects Cardiac Mitochondria under Severe Oxidative Stress
title_fullStr ADP Protects Cardiac Mitochondria under Severe Oxidative Stress
title_full_unstemmed ADP Protects Cardiac Mitochondria under Severe Oxidative Stress
title_short ADP Protects Cardiac Mitochondria under Severe Oxidative Stress
title_sort adp protects cardiac mitochondria under severe oxidative stress
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3862761/
https://www.ncbi.nlm.nih.gov/pubmed/24349464
http://dx.doi.org/10.1371/journal.pone.0083214
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