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Inactivation of Nitric Oxide by Uric Acid
Authors:Christine Gersch  Sergiu P Palii  Kyung Mee Kim  Alexander Angerhofer  Richard J Johnson  George N Henderson
Institution:1. Division of Nephrology and Hypertension, Department of Medicine , University of Florida , Gainesville, Florida, USA;2. Department of Chemistry, College of Liberal Arts and Sciences , University of Florida , Gainesville, Florida, USA;3. Division of Nephrology and Hypertension, Department of Medicine , University of Florida , Gainesville, Florida, USA;4. Division of Endocrinology and Metabolism, Department of Medicine, College of Medicine , University of Florida , Gainesville, Florida, USA;5. General Clinical Research Center , University of Florida , Gainesville, Florida, USA
Abstract:The 1980 identification of nitric oxide (NO) as an endothelial cell-derived relaxing factor resulted in an unprecedented biomedical research of NO and established NO as one of the most important cardiovascular, nervous and immune system regulatory molecule. A reduction in endothelial cell NO levels leading to “endothelial dysfunction” has been identified as a key pathogenic event preceding the development of hypertension, metabolic syndrome, and cardiovascular disease. The reduction in endothelial NO in cardiovascular disease has been attributed to the action of oxidants that either directly react with NO or uncouple its substrate enzyme. In this report, we demonstrate that uric acid (UA), the most abundant antioxidant in plasma, reacts directly with NO in a rapid irreversible reaction resulting in the formation of 6-aminouracil and depletion of NO. We further show that this reaction occurs preferentially with NO even in the presence of oxidants peroxynitrite and hydrogen peroxide and that the reaction is at least partially blocked by glutathione. This study shows a potential mechanism by which UA may deplete NO and cause endothelial dysfunction, particularly under conditions of oxidative stress in which UA is elevated and intracellular glutathione is depleted.
Keywords:Uric acid  nitric oxide  cardiovascular disease  endothelial dysfunction  6-aminouracil  glutathione
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