Difference between revisions of "Sauer 1980 J Biol Chem"
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|abstract=[[File:Sauer 1980 J Biol Chem.jpg|right|300px]] In the presence of ADP, pyruvate formed from malate was rapidly oxidized to CO2 by pyruvate dehydrogenase. The production and oxidation of pyruvate occurred entirely within the mitochondrial matrix space. The results are consistent with a role for the NAD(P)+-dependent malic enzyme in net glutamine oxidation in undifferentiated hepatomas. | |abstract=[[File:Sauer 1980 J Biol Chem.jpg|right|300px]] In the presence of ADP, pyruvate formed from malate was rapidly oxidized to CO2 by pyruvate dehydrogenase. The production and oxidation of pyruvate occurred entirely within the mitochondrial matrix space. The results are consistent with a role for the NAD(P)<sup>+</sup>-dependent malic enzyme in net glutamine oxidation in undifferentiated hepatomas. | ||
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Revision as of 10:56, 27 July 2014
Sauer LA, Dauchy RT, Nagel WO, Morris HP (1980) Mitochondrial malic enzymes. Mitochondrial NAD(P)+-dependent malic enzyme activity and malate-dependent pyruvate formation are progression-linked in Morris hepatomas. J Biol Chem 255: 3844-8. |
Sauer LA, Dauchy RT, Nagel WO, Morris HP (1980) J Biol Chem
Abstract:
In the presence of ADP, pyruvate formed from malate was rapidly oxidized to CO2 by pyruvate dehydrogenase. The production and oxidation of pyruvate occurred entirely within the mitochondrial matrix space. The results are consistent with a role for the NAD(P)+-dependent malic enzyme in net glutamine oxidation in undifferentiated hepatomas.
Labels: MiParea: Respiration
Pathology: Cancer
Organism: Rat Tissue;cell: Liver Preparation: Isolated Mitochondria"Isolated Mitochondria" is not in the list (Intact organism, Intact organ, Permeabilized cells, Permeabilized tissue, Homogenate, Isolated mitochondria, SMP, Chloroplasts, Enzyme, Oxidase;biochemical oxidation, ...) of allowed values for the "Preparation" property.
Coupling state: OXPHOS
Malic enzyme