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Modulation of Protein Kinase Activity and Gene Expression by Reactive Oxygen Species and Their Role in Vascular Physiology and Pathophysiology

Arteriosclerosis Thrombosis and Vascular Biology · 2000 · Vol. 20(10) · pp. 2175–2183
Kathy K. GriendlingDan C. SorescuBernard LassègueMasuko Ushio‐Fukai

Abstract

Emerging evidence indicates that reactive oxygen species, especially superoxide and hydrogen peroxide, are important signaling molecules in cardiovascular cells. Their production is regulated by hormone-sensitive enzymes such as the vascular NAD(P)H oxidases, and their metabolism is coordinated by antioxidant enzymes such as superoxide dismutase, catalase, and glutathione peroxidase. Both of these reactive oxygen species serve as second messengers to activate multiple intracellular proteins and enzymes, including the epidermal growth factor receptor, c-Src, p38 mitogen-activated protein kinase, Ras, and Akt/protein kinase B. Activation of these signaling cascades and redox-sensitive transcription factors leads to induction of many genes with important functional roles in the physiology and pathophysiology of vascular cells. Thus, reactive oxygen species participate in vascular smooth muscle cell growth and migration; modulation of endothelial function, including endothelium-dependent relaxation and expression of a proinflammatory phenotype; and modification of the extracellular matrix. All of these events play important roles in vascular diseases such as hypertension and atherosclerosis, suggesting that the sources of reactive oxygen species and the signaling pathways that they modify may represent important therapeutic targets.

Nitric Oxide and Endothelin EffectsRedox biology and oxidative stressNeutrophil, Myeloperoxidase and Oxidative MechanismsReactive oxygen speciesCell biologySignal transductionBiologyVascular smooth muscleSuperoxide dismutaseBiochemistryCell signalingProtein kinase ASuperoxide

MeSH terms

Angiotensin IIAnimalsBlood VesselsCells, CulturedEndothelium, VascularEnzyme ActivationGene Expression RegulationHumansHydrogen PeroxideMuscle, Smooth, VascularNADPH DehydrogenaseOxidation-ReductionPhosphoproteinsProtein KinasesProtein-Tyrosine Kinases

Funding

  • National Institutes of Health
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947
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References
NADH oxidoreductase is a major source of superoxide anion in bovine coronary artery endothelium
American Journal of Physiology-Heart and Circulatory Physiology · 1994 · 534 citations
Expression of phagocyte NADPH oxidase components in human endothelial cells
American Journal of Physiology-Heart and Circulatory Physiology · 1996 · 426 citations
Activation of the JAK-STAT pathway by reactive oxygen species
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