Oxidative stress induced mitochondrial protein kinase A mediates cytochrome c oxidase dysfunction.

Previously we showed that Protein kinase A (PKA) activated in hypoxia and myocardial ischemia/reperfusion mediates phosphorylation of subunits I, IVi1 and Vb of cytochrome c oxidase. However, the mechanism of activation of the kinase under hypoxia remains unclear. It is also unclear if hypoxic stres...

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Main Authors: Satish Srinivasan, Joseph Spear, Karunakaran Chandran, Joy Joseph, Balaraman Kalyanaraman, Narayan G Avadhani
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3795003?pdf=render
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spelling doaj-e2997e21a0e34f5a99eee5fe97cad1ad2020-11-25T01:25:09ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01810e7712910.1371/journal.pone.0077129Oxidative stress induced mitochondrial protein kinase A mediates cytochrome c oxidase dysfunction.Satish SrinivasanJoseph SpearKarunakaran ChandranJoy JosephBalaraman KalyanaramanNarayan G AvadhaniPreviously we showed that Protein kinase A (PKA) activated in hypoxia and myocardial ischemia/reperfusion mediates phosphorylation of subunits I, IVi1 and Vb of cytochrome c oxidase. However, the mechanism of activation of the kinase under hypoxia remains unclear. It is also unclear if hypoxic stress activated PKA is different from the cAMP dependent mitochondrial PKA activity reported under normal physiological conditions. In this study using RAW 264.7 macrophages and in vitro perfused mouse heart system we investigated the nature of PKA activated under hypoxia. Limited protease treatment and digitonin fractionation of intact mitochondria suggests that higher mitochondrial PKA activity under hypoxia is mainly due to increased sequestration of PKA Catalytic α (PKAα) subunit in the mitochondrial matrix compartment. The increase in PKA activity is independent of mitochondrial cAMP and is not inhibited by adenylate cyclase inhibitor, KH7. Instead, activation of hypoxia-induced PKA is dependent on reactive oxygen species (ROS). H89, an inhibitor of PKA activity and the antioxidant Mito-CP prevented loss of CcO activity in macrophages under hypoxia and in mouse heart under ischemia/reperfusion injury. Substitution of wild type subunit Vb of CcO with phosphorylation resistant S40A mutant subunit attenuated the loss of CcO activity and reduced ROS production. These results provide a compelling evidence for hypoxia induced phosphorylation as a signal for CcO dysfunction. The results also describe a novel mechanism of mitochondrial PKA activation which is independent of mitochondrial cAMP, but responsive to ROS.http://europepmc.org/articles/PMC3795003?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Satish Srinivasan
Joseph Spear
Karunakaran Chandran
Joy Joseph
Balaraman Kalyanaraman
Narayan G Avadhani
spellingShingle Satish Srinivasan
Joseph Spear
Karunakaran Chandran
Joy Joseph
Balaraman Kalyanaraman
Narayan G Avadhani
Oxidative stress induced mitochondrial protein kinase A mediates cytochrome c oxidase dysfunction.
PLoS ONE
author_facet Satish Srinivasan
Joseph Spear
Karunakaran Chandran
Joy Joseph
Balaraman Kalyanaraman
Narayan G Avadhani
author_sort Satish Srinivasan
title Oxidative stress induced mitochondrial protein kinase A mediates cytochrome c oxidase dysfunction.
title_short Oxidative stress induced mitochondrial protein kinase A mediates cytochrome c oxidase dysfunction.
title_full Oxidative stress induced mitochondrial protein kinase A mediates cytochrome c oxidase dysfunction.
title_fullStr Oxidative stress induced mitochondrial protein kinase A mediates cytochrome c oxidase dysfunction.
title_full_unstemmed Oxidative stress induced mitochondrial protein kinase A mediates cytochrome c oxidase dysfunction.
title_sort oxidative stress induced mitochondrial protein kinase a mediates cytochrome c oxidase dysfunction.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Previously we showed that Protein kinase A (PKA) activated in hypoxia and myocardial ischemia/reperfusion mediates phosphorylation of subunits I, IVi1 and Vb of cytochrome c oxidase. However, the mechanism of activation of the kinase under hypoxia remains unclear. It is also unclear if hypoxic stress activated PKA is different from the cAMP dependent mitochondrial PKA activity reported under normal physiological conditions. In this study using RAW 264.7 macrophages and in vitro perfused mouse heart system we investigated the nature of PKA activated under hypoxia. Limited protease treatment and digitonin fractionation of intact mitochondria suggests that higher mitochondrial PKA activity under hypoxia is mainly due to increased sequestration of PKA Catalytic α (PKAα) subunit in the mitochondrial matrix compartment. The increase in PKA activity is independent of mitochondrial cAMP and is not inhibited by adenylate cyclase inhibitor, KH7. Instead, activation of hypoxia-induced PKA is dependent on reactive oxygen species (ROS). H89, an inhibitor of PKA activity and the antioxidant Mito-CP prevented loss of CcO activity in macrophages under hypoxia and in mouse heart under ischemia/reperfusion injury. Substitution of wild type subunit Vb of CcO with phosphorylation resistant S40A mutant subunit attenuated the loss of CcO activity and reduced ROS production. These results provide a compelling evidence for hypoxia induced phosphorylation as a signal for CcO dysfunction. The results also describe a novel mechanism of mitochondrial PKA activation which is independent of mitochondrial cAMP, but responsive to ROS.
url http://europepmc.org/articles/PMC3795003?pdf=render
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