Youssef Hatefi mainly focuses on Biochemistry, Enzyme, Stereochemistry, Respiratory chain and Submitochondrial particle. His ATP synthase, NADH dehydrogenase, Mitochondrion, Flavin group and Protein subunit study are his primary interests in Biochemistry. The concepts of his Enzyme study are interwoven with issues in Hydrolysis and Nucleotide.
His study in Stereochemistry is interdisciplinary in nature, drawing from both Triphenyltin chloride, Phenylarsine oxide, Dithiol and Electron transfer. As part of the same scientific family, Youssef Hatefi usually focuses on Respiratory chain, concentrating on Coenzyme Q – cytochrome c reductase and intersecting with Microsome and Biological membrane. His research in Submitochondrial particle intersects with topics in Oxidative phosphorylation, Chromatography and Medicinal chemistry.
Youssef Hatefi spends much of his time researching Biochemistry, Stereochemistry, Submitochondrial particle, Enzyme and NAD+ kinase. His research related to Mitochondrion, ATP synthase, Oxidative phosphorylation, Respiratory chain and Protein subunit might be considered part of Biochemistry. His research integrates issues of Cytochrome c, Coenzyme Q – cytochrome c reductase, Oxidoreductase, Substrate and Histidine in his study of Stereochemistry.
His Oxidoreductase study integrates concerns from other disciplines, such as Crystallography and Flavoprotein. Youssef Hatefi usually deals with Submitochondrial particle and limits it to topics linked to ATP hydrolysis and Hydrolysis and Phosphate. His NAD+ kinase research includes themes of Nucleotide, Nicotinamide, Trypsin, Dehydrogenase and Binding site.
His main research concerns Biochemistry, NAD+ kinase, Stereochemistry, Protein subunit and Submitochondrial particle. Much of his study explores Biochemistry relationship to Molecular biology. His NAD+ kinase study combines topics from a wide range of disciplines, such as Nucleotide and Nicotinamide.
His Stereochemistry study incorporates themes from Cytochrome c, Coenzyme Q – cytochrome c reductase, Stigmatellin, Photochemistry and Protein structure. His Protein subunit research is multidisciplinary, incorporating perspectives in Oxidoreductase, Gel electrophoresis and Trypsin. Youssef Hatefi works mostly in the field of Submitochondrial particle, limiting it down to concerns involving ATP hydrolysis and, occasionally, Hydrolysis, Proton-Translocating ATPases and Adenosine triphosphate.
His primary areas of study are Biochemistry, ATP synthase, Submitochondrial particle, ATP hydrolysis and Oxidoreductase. His study in Biochemistry concentrates on Enzyme and NAD+ kinase. The various areas that Youssef Hatefi examines in his ATP synthase study include ATPase and ATP synthase alpha/beta subunits.
His work deals with themes such as Trypsin and Oligomycin, which intersect with Submitochondrial particle. Youssef Hatefi has researched ATP hydrolysis in several fields, including Venturicidin and Oxidative phosphorylation. His Oxidoreductase research includes elements of Flavoprotein, NADH Dehydrogenase, Crystallography, Protein subunit and Stereochemistry.
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Six unidentified reading frames of human mitochondrial DNA encode components of the respiratory-chain NADH dehydrogenase
A. Chomyn;P. Mariottini;M. W. J. Cleeter;C. I. Ragan.
Nature (1985)
Purification and molecular and enzymic properties of mitochondrial NADH dehydrogenase.
Yves M. Galante;Youssef Hatefi.
Archives of Biochemistry and Biophysics (1979)
Isolation and Enzymatic Properties of the Mitochondrial Reduced Diphosphopyridine Nucleotide Dehydrogenase
Y Hatefi;K E Stempel.
Journal of Biological Chemistry (1969)
Reconstitution of Succinate-Coenzyme Q Reductase (Complex II) and Succinate Oxidase Activities by a Highly Purified, Reactivated Succinate Dehydrogenase
M.L. Baginsky;Y. Hatefi.
Journal of Biological Chemistry (1969)
Studies on the mechanism of oxidative phosphorylation. Catalytic site cooperativity in ATP synthesis.
A Matsuno-Yagi;Y Hatefi.
Journal of Biological Chemistry (1985)
Characterization and Localization of Mitochondrial Uncoupler Binding Sites with an Uncoupler Capable of Photoaffinity Labeling
Walter G. Hanstein;Youssef Hatefi.
Journal of Biological Chemistry (1974)
Lipid oxidation in biological membranes. I. Lipid oxidation in submitochondrial particles and microsomes induced by chaotropic agents.
Y. Hatefi;W.G. Hanstein.
Archives of Biochemistry and Biophysics (1970)
Thermodynamic Analysis of Flavin in Mitochondrial NADH:Ubiquinone Oxidoreductase (Complex I)
Vladimir D. Sled;Ned I. Rudnitzky;Youssef Hatefi;Tomoko Ohnishi.
Biochemistry (1994)
EPR studies of iron-sulfur clusters in isolated subunits and subfractions of NADH-ubiquinone oxidoreductase.
T Ohnishi;C I Ragan;Y Hatefi.
Journal of Biological Chemistry (1985)
Catalytic Sector of Complex I (NADH:Ubiquinone Oxidoreductase):Subunit Stoichiometry and Substrate-Induced Conformation Changes
Grigory Belogrudov;Youssef Hatefi.
Biochemistry (1994)
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