Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8268886 | Free Radical Biology and Medicine | 2015 | 28 Pages |
Abstract
Physical exercise increases the cellular production of reactive oxygen species (ROS) in muscle, liver, and other organs. This is unlikely due to increased mitochondrial production but rather to extramitochondrial sources such as NADPH oxidase or xanthine oxidase. We have reported a xanthine oxidase-mediated increase in ROS production in many experimental models from isolated cells to humans. Originally, ROS were considered as detrimental and thus as a likely cause of cell damage associated with exhaustion. In the past decade, evidence showing that ROS act as signals has been gathered and thus the idea that antioxidant supplementation in exercise is always recommendable has proved incorrect. In fact, we proposed that exercise itself can be considered as an antioxidant because training increases the expression of classical antioxidant enzymes such as superoxide dismutase and glutathione peroxidase and, in general, lowering the endogenous antioxidant enzymes by administration of antioxidant supplements may not be a good strategy when training. Antioxidant enzymes are not the only ones to be activated by training. Mitochondriogenesis is an important process activated in exercise. Many redox-sensitive enzymes are involved in this process. Important signaling molecules like MAP kinases, NF-κB, PGC-1α, p53, heat shock factor, and others modulate muscle adaptation to exercise. Interventions aimed at modifying the production of ROS in exercise must be performed with care as they may be detrimental in that they may lower useful adaptations to exercise.
Keywords
NRF-2ERKGSSGHeat-shock factor-1GABPiNOSHSF-1PPARCuZnSODeNOSCOX IVp70S6KIL-1RAP-1MnSODGCsNRF-1IKKPGC-1αAMPKPPARγ coactivator 1αNF-κBOXPHOSPGC-1βGPXNACGSHPEG-SODIL-6mTORJnkESRc-Jun N-terminal kinaseDMSOMitochondrial DNAIκB kinaseMAPKmtTFAN-acetylcysteinep70 ribosomal S6 kinaseAktinterleukin 6mtDNADimethyl sulfoxideRONSinducible nitric oxide synthaseendothelial nitric oxide synthasemanganese superoxide dismutasecytochrome c oxidaseOxidative phosphorylation systemRedox signalingElectron spin resonance spectroscopyNuclear respiratory factor 1nuclear respiratory factor 2mitochondrial transcription factor ASkeletal musclenuclear factor κBcopper/zinc superoxide dismutasemammalian target of rapamycinhexokinaseinternational unitsVitaminsGA-binding proteinactivator protein 15′-AMP-activated protein Kinaseprotein kinase Bmitogen-activated protein kinasereduced glutathioneextracellular signal-regulated kinaseoxidized glutathioneglutathione peroxidaseReactive oxygen and nitrogen speciesInterleukin 1 receptorPeroxisome proliferator-activated receptors
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Authors
Mari Carmen Gomez-Cabrera, Andrea Salvador-Pascual, Helena Cabo, Beatriz Ferrando, Jose Viña,