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The biochemical, pathophysiological and medical aspects of ubiquinone function
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Protonmotive redox mechanism of the cytochrome b-c1 complex in the respiratory chain: Protonmotive ubiquinone cycle
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Bifurcated ubihydroquinone oxidation in the cytochrome bc1 complex by proton-gated charge transfer
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Ubisemiquinones of the mitochondrial respiratory chain do not interact with molecular oxygen
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Nohl, H. and Stolze, K., Ubisemiquinones of the Mitochondrial Respiratory Chain do not Interact with Molecular Oxygen, Free Radic. Res. Commun., 16, 409, 1992.
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Nohl, H.1
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10
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0029006347
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Effect of alpha-lipoic acid and dihydrolipoic acid on ischemia/reperfusion injury of the heart and heart mitochondria
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Schönheit, K., Gille, L., and Nohl, H., Effect of alpha-lipoic acid and dihydrolipoic acid on ischemia/reperfusion injury of the heart and heart mitochondria, Biochim. Biophys. Acta, 1271, 335-342, 1995.
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Schönheit, K.1
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12
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0024492834
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Spatial organization of the redox active centers in the bovine heart ubiquinol-cytochrome coxidoreductase
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Ohnishi, T., Schägger, H., Meinhardt, S. W., LoBrutto, R., Link, T. A., and von Jagow, G., Spatial organization of the redox active centers in the bovine heart ubiquinol-cytochrome coxidoreductase. J. Biol. Chem, 264, 735, 1989.
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13
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0023221893
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A novel superoxide radical generator in heart mitochondria
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Nohl, H., A novel superoxide radical generator in heart mitochondria, FEBS Lett., 214, 269, 1987.
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0023657326
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Demonstration of the existence of an organo-specific nadh dehydrogenase in heart mitochondria
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Nohl, H., Demonstration of the existence of an organo-specific NADH dehydrogenase in heart mitochondria, Eur J. Biochem., 169, 585, 1987.
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15
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0030068461
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Conditions allowing redox-cycling ubisemiquinone in mitochondria to establish a direct redox couple with molecular oxygen
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Nohl, H., Gille, L., Schoenheit, K., and Liu, Y., Conditions allowing redox-cycling ubisemiquinone in mitochondria to establish a direct redox couple with molecular oxygen, Free Radic. Biol. Med., 20, 207, 1996.
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17
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0019073929
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The metabolic fate of mitochondrial hydrogen peroxide
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Nohl, H. and Jordan, W., The metabolic fate of mitochondrial hydrogen peroxide. Eur. J. Biochem., 111, 203, 1980.
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Nohl, H.1
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18
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0343341585
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The biochemical role of ubiquinone and ubiquinone-derivatives in the generation of hydroxyl-radicals from hydrogen peroxide
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Bors, W., Saran, M., and Tait, D., Eds., De Gruyter, New York
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Nohl, H. and Jordan, W., The biochemical role of ubiquinone and ubiquinone-derivatives in the generation of hydroxyl-radicals from hydrogen peroxide, in Oxygen Radicals in Chemistry and Biology, Bors, W., Saran, M., and Tait, D., Eds., De Gruyter, New York, 1984, 155.
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Nohl, H.1
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19
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85057241009
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Dresden, July 2 to 5, 1999, OP53. Nohl, H., Gille, L. Chapter: The Role of Coenzyme Q in Lysosomes, CoenzymeQ: From molecular mechanisms to Nutrition and Health, Kagan, V and Quinn, P. J., eds., CRC Press, Boca Raton, FL
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Gille, L. and Nohl, H., Redox-function of ubiquinone in lysosomes, presented at SFRR (Europe) Summer Meeting, Dresden, July 2 to 5, 1999, OP53. Nohl, H., Gille, L. Chapter: The Role of Coenzyme Q in Lysosomes, CoenzymeQ: From molecular mechanisms to Nutrition and Health, Kagan, V and Quinn, P. J., eds., CRC Press, Boca Raton, FL, 2000.
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(2000)
Redox-Function of Ubiquinone in Lysosomes, Presented at SFRR (Europe) Summer Meeting
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Gille, L.1
Nohl, H.2
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20
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0032189721
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Antioxidant-derived prooxidant formation from ubiquinol
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Nohl, H., Gille, L., and Kozlov, A. V, Antioxidant-derived prooxidant formation from ubiquinol, Free Radic. Biol. Med., 25, 666, 1998.
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Nohl, H.1
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