Biochemical, physiological and medical aspects of ubiquinone function.
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[1] G. Dallner,et al. Lipid compositions of intracellular membranes isolated from rat liver nodules in Wistar rats. , 1991, Cancer research.
[2] A. Hruszkewycz,et al. The 8-hydroxyguanine content of isolated mitochondria increases with lipid peroxidation. , 1990, Mutation research.
[3] L. Ernster,et al. A case of severe hypermetabolism of nonthyroid origin with a defect in the maintenance of mitochondrial respiratory control: a correlated clinical, biochemical, and morphological study. , 1962, The Journal of clinical investigation.
[4] L. Ernster,et al. The mode of action of lipid-soluble antioxidants in biological membranes: relationship between the effects of ubiquinol and vitamin E as inhibitors of lipid peroxidation in submitochondrial particles. , 1992, BioFactors.
[5] D. Edington,et al. Tissue coenzyme Q (ubiquinone) and protein concentrations over the life span of the laboratory rat , 1985, Mechanisms of Ageing and Development.
[6] R. E. Beyer,et al. Coenzyme Q (ubiquinone) levels of tissues of rats during acclimation to cold. , 1962, Canadian journal of biochemistry and physiology.
[7] A. Thelin,et al. Half‐life of ubiquinone‐9 in rat tissues , 1992, FEBS letters.
[8] G. Dallner,et al. Distribution and redox state of ubiquinones in rat and human tissues. , 1992, Archives of biochemistry and biophysics.
[9] M. Klingenberg,et al. The kinetics of the redox reactions of ubiquinone related to the electron-transport activity in the respiratory chain. , 1973, European journal of biochemistry.
[10] K Beyer,et al. ADP/ATP carrier protein from beef heart mitochondria has high amounts of tightly bound cardiolipin, as revealed by 31P nuclear magnetic resonance. , 1985, Biochemistry.
[11] E. Cadenas,et al. [30] DT-diaphorase : purification, properties, and function , 1990 .
[12] B. Persson,et al. Studies with ubiquinone-depleted submitochondrial particles. Essentiality of ubiquinone for the interaction of succinate dehydrogenase, NADH dehydrogenase, and cytochrome b. , 1969, European journal of biochemistry.
[13] G. Dallner,et al. Inhibition of lipid peroxidation by ubiquinol in submitochondrial particles in the absence of vitamin E , 1991, FEBS letters.
[14] P. Mitchell. Protonmotive redox mechanism of the cytochrome b‐c 1 complex in the respiratory chain: Protonmotive ubiquinone cycle , 1975, FEBS letters.
[15] A. Tappel,et al. The inhibition of mitochondrial peroxidation by ubiquinone and ubiquinol. , 1966, The Journal of biological chemistry.
[16] G. Dallner,et al. Ubiquinone biosynthesis by the microsomal fraction from rat liver. , 1987, Biochimica et biophysica acta.
[17] L. Ernster,et al. Electron spin resonance measurement on ubiquinone-depleted and ubiquinone-replenished submitochondrial particles. , 1970, Biochimica et biophysica acta.
[18] J. Ericsson,et al. Effect of squalestatin 1 on the biosynthesis of the mevalonate pathway lipids. , 1994, Biochimica et biophysica acta.
[19] E. Stadtman,et al. Metal-catalyzed oxidation of proteins. Physiological consequences. , 1991, The Journal of biological chemistry.
[20] K. Ingold,et al. Is vitamin E the only lipid-soluble, chain-breaking antioxidant in human blood plasma and erythrocyte membranes? , 1983, Archives of biochemistry and biophysics.
[21] K. Kristensson,et al. Rates of cholesterol, ubiquinone, dolichol and dolichyl‐P biosynthesis in rat brain slices , 1990, FEBS letters.
[22] G. Dallner,et al. Effects of clofibrate, phthalates and probucol on ubiquinone levels. , 1994, Chemico-biological interactions.
[23] B. Trumpower,et al. The protonmotive Q cycle. Energy transduction by coupling of proton translocation to electron transfer by the cytochrome bc1 complex. , 1990, The Journal of biological chemistry.
[24] E. Niki,et al. Antioxidants in relation to lipid peroxidation. , 1987, Chemistry and physics of lipids.
[25] R. Floyd,et al. Lipid peroxidation products mediate the formation of 8-hydroxydeoxyguanosine in DNA. , 1992, Free radical biology & medicine.
[26] R. Stocker,et al. Dietary supplementation with coenzyme Q10 results in increased levels of ubiquinol-10 within circulating lipoproteins and increased resistance of human low-density lipoprotein to the initiation of lipid peroxidation. , 1992, Biochimica et biophysica acta.
[27] B. Persson,et al. Studies with ubiquinone-depleted submitochondrial particles. , 1974, FEBS letters.
[28] F. L. Crane,et al. Isolation of a quinone from beef heart mitochondria. , 1957, Biochimica et biophysica acta.
[29] P. Forsmark-Andrée,et al. Evidence for a protective effect of endogenous ubiquinol against oxidative damage to mitochondrial protein and DNA during lipid peroxidation. , 1994, Molecular aspects of medicine.
[30] P. Mitchell,et al. Possible molecular mechanisms of the protonmotive function of cytochrome systems. , 1976, Journal of theoretical biology.
[31] K. Takeshige,et al. Reduced nicotinamide adenine dinucleotide phosphate-dependent lipid peroxidation by beef heart submitochondrial particles. , 1975, Journal of biochemistry.
[32] 八木 国夫. Active oxygens, lipid peroxides and antioxidants , 1993 .
[33] B. Arison,et al. COENZYME Q. I. STRUCTURE STUDIES ON THE COENZYME Q GROUP , 1958 .
[34] L. Szarkowska. The restoration of DPNH oxidase activity by coenzyme Q (ubiquinone). , 1966, Archives of biochemistry and biophysics.
[35] A. Sevanian,et al. Effect of vitamin E on arachidonic acid peroxidation and its binding to Chinese hamster V79 cell DNA. , 1991, Biochimica et biophysica acta.
[36] Chong-Ho Kim,et al. Bioenergetics: Molecular Biology, Biochemistry, and Pathology , 1991 .
[37] R. A. Morton,et al. A constituent of the unsaponifiable portion of animal tissue lipids (lambda max. 272 m mu). , 1955, The Biochemical journal.
[38] T. Ramasarma,et al. INTRACELLULAR DISTRIBUTION OF COENZYME Q IN RAT LIVER. , 1963, Archives of biochemistry and biophysics.
[39] S. A. Mortensen. Perspectives on therapy of cardiovascular diseases with oenzyme Q10 (Ubiquinone) , 1993, The Clinical investigator.
[40] C. H. Lea,et al. The antioxidant action of ubiquinones and related compounds. , 1962 .
[41] J. Berden,et al. Oxidoreduction of cytochrome b in the presence of antimycin. , 1972, Biochimica et biophysica acta.
[42] L. Ernster,et al. Ubiquinone (coenzyme Q) and the regulation of basal metabolic rate by thryoid hormones. , 1963, Biochimica et biophysica acta.
[43] R. E. Beyer,et al. Alterations of rat-tissue coenzyme Q (ubiquinone) levels by various treatments. , 1962 .
[44] B. Halliwell,et al. Free radicals in biology and medicine , 1985 .
[45] J. Wrigglesworth,et al. Tissue concentrations of coenzyme Q10 in the rat following its oral and intraperitoneal administration. , 1992, Drug metabolism and disposition: the biological fate of chemicals.
[46] K. Kristensson,et al. Lipid Composition in Different Regions of the Brain in Alzheimer's Disease/Senile Dementia of Alzheimer's Type , 1992, Journal of neurochemistry.
[47] B. Ames,et al. Endogenous oxidative DNA damage, aging, and cancer. , 1989, Free radical research communications.
[48] L. Packer,et al. Mitochondrial electron transport-linked tocopheroxyl radical reduction. , 1989, The Journal of biological chemistry.
[49] J. Goldstein,et al. Regulation of the mevalonate pathway , 1990, Nature.
[50] L. Packer,et al. Antioxidant effects of ubiquinones in microsomes and mitochondria are mediated by tocopherol recycling. , 1990, Biochemical and biophysical research communications.
[51] L. Ernster. P/O Ratios—The First Fifty Years , 1993, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[52] C. Lee,et al. Initiation of lipid peroxidation in submitochondrial particles: effect of respiratory inhibitors. , 1991, Archives of biochemistry and biophysics.
[53] R. Takayanagi,et al. NADH- and NADPH-dependent lipid peroxidation in bovine heart submitochondrial particles. Dependence on the rate of electron flow in the respiratory chain and an antioxidant role of ubiquinol. , 1980, The Biochemical journal.
[54] K. Mukai,et al. Stopped-flow kinetic study of the regeneration reaction of tocopheroxyl radical by reduced ubiquinone-10 in solution. , 1990, Biochimica et biophysica acta.
[55] R. E. Beyer. Inhibition by coenzyme Q of ethanol- and carbon tetrachloride-stimulated lipid peroxidation in vivo and catalyzed by microsomal and mitochondrial systems. , 1988, Free radical biology & medicine.
[56] J. Ericsson,et al. Branch-point reactions in the biosynthesis of cholesterol, dolichol, ubiquinone and prenylated proteins. , 1994, Biochimica et biophysica acta.
[57] B. Samuelsson,et al. Oxidative Processes and Antioxidants , 1995 .
[58] M. Klingenberg,et al. Quinones and nicotinamide nucleotides associated with electron transfer. , 1970, Vitamins and hormones.
[59] F. L. Crane,et al. Transplasma-membrane redox systems in growth and development. , 1985, Biochimica et biophysica acta.
[60] M. Eriksson,et al. Effects of pravastatin and cholestyramine on products of the mevalonate pathway in familial hypercholesterolemia. , 1991, Journal of lipid research.
[61] A. Tappel,et al. VITAMIN E AND FREE RADICAL PEROXIDATION OF LIPIDS * , 1972, Annals of the New York Academy of Sciences.
[62] B. Fitzgerald,et al. Squalestatin 1, a potent inhibitor of squalene synthase, which lowers serum cholesterol in vivo. , 1992, The Journal of biological chemistry.
[63] S. Aust,et al. Transition metals as catalysts of "autoxidation" reactions. , 1990, Free radical biology & medicine.