Results 281 to 290 of about 465,834 (342)
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NADH dehydrogenase in cystic fibrosis
Clinical Genetics, 1982It has been claimed that the pH profile of mitochondrial NADH dehydrogenase in cultured skin fibroblasts can be used to distinguish cystic fibrosis homozygotes, heterozygotes and normal controls. This phenomenon has been examined in more readily accessible white blood cell preparations.
N R, Sanguinetti-Briceno, D J, Brock
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Terpenylnaphthoquinones are reductively activated by NADH/NADH dehydrogenase
Toxicological & Environmental Chemistry, 2005Novel terpenylnaphthoquinones were found to enhance the rate of oxygen consumption in the presence of NADH/NADH dehydrogenase in 1 : 1 v/v mixtures of 40 mM phosphate buffer (pH 7.4) and DMSO. Initial rates of oxygen consumption increase with an increase in the half-wave reduction potentials of the quinones.
Antonio E. Alegria +6 more
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NADH dehydrogenase and NADH oxidation inBacillus megaterium
Current Microbiology, 1986Only one type (membrane-bound form) of NADH dehydrogenase could be detected in the log-phase cells ofBacillus megaterium. By sonification this enzyme could be effectively solubilized, while NADH oxidase remained bound to the membrane. A molecular weight of about 40 Kd was estimated for the dehydrogenase by gel electrophoresis in the presence of sodium ...
Sambasivamoorthy Thiagalingam +1 more
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Thienylvinylindoles as inhibitors of mitochondrial NADH dehydrogenase
Pharmaceutica Acta Helvetiae, 1994In connection with a previous study, new phenylindoles bearing a 2- or 3-thienyl group were synthesized and tested as specific inhibitors of mitochondrial NADH dehydrogenase. The position of the phenyl ring and the geometrical configuration play an important role in the activity and specificity of these derivatives.
A, Andreani +5 more
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Mechanism of NADH transfer among dehydrogenases
Biochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1998Steady-state and transient-state kinetic experiments have been performed to test the proposal that there is a direct (channelled) transfer of NADH from one dehydrogenase to another if the two enzymes exhibit distinct chiral coenzyme specificity (A-side vs. B-side).
W M, Arias, H, Pettersson, G, Pettersson
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The Binding of NAD+ and NADH to Glyceraldehydephosphate Dehydrogenase
1971Publisher Summary This chapter discusses the binding of NAD+ and NADH to glyceraldehydephosphate dehydrogenase. Early studies demonstrated that the rabbit-muscle enzyme binds NAD+ much more firmly than other dehydrogenases, because the crystalline enzyme contains bound NAD+.
E C, Slater, J J, de Vijlder, W, Boers
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The Molecular Organization of NADH Dehydrogenase
1980Interest in the structure of the enzymes of the mitochondrial respiratory chain is a fairly recent development. Previously work has concentrated on the nature of the chemical groups that undergo oxidoreduction, their sequence of operation, and their thermodynamic and kinetic properties.
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The Three Families of Respiratory NADH Dehydrogenases
2007Most reducing equivalents extracted from foodstuffs during oxidative metabolism are fed into the respiratory chains of aerobic bacteria and mitochondria by NADH:quinone oxidoreductases. Three families of enzymes can perform this task and differ remarkably in their complexity and role in energy conversion.
Stefan, Kerscher +3 more
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The [4B-3H] NADH-H2O exchange reaction of the mitochondrial NADH dehydrogenase
Biochemical and Biophysical Research Communications, 1985The purified mitochondrial NADH dehydrogenase enzyme has been shown to catalyze a rapid [4B-3H] NADH-H2O exchange reaction. When the enzyme is subjected to a single freeze-thaw cycle there is a complete loss of NADH dehydrogenation without a measurable decrease in the [4B-3H] NADH-H2O exchange.
S, Chen, R J, Guillory
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NADH Dehydrogenases: From Basic Science to Biomedicine
Journal of Bioenergetics and Biomembranes, 2001This review article is concerned with two on-going research projects in our laboratory, both of which are related to the study of the NADH dehydrogenase enzyme complexes in the respiratory chain. The goal of the first project is to decipher the structure and mechanism of action of the proton-translocating NADH-quinone oxidoreductase (NDH-1) from two ...
T, Yagi +5 more
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