The use of p-chloromercuribenzoic acid in the determination of ascorbic acid with 2:6-dichlorophenolindophenol.
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The activity of a particulate succinate cytochrome c reductase is inhibited by antimycin, 2-heptyl-4-hydroxyquinoline-N-oxide, 2-(9-cyclohexyl-n-nonyl)-3-hydroxy-1,4naphthoquinone and thenoyltrifluoroacetone. The ratio of antimycin A (required for complete inhibition) to the molar content of the cytochrome b of the reductase is approximately 0.5 in contrast to the reported value of 1.0 or higher for succinate oxidase preparations. However, the degreeof inhibition by antimycin is dependent on the exogenous coenzyme Q (ubiquinone) present. Indeed, the inhibition from any of these compounds is competitively reversed by exogenous coenzyme Q in the system.
Das, S. K. (Calcutta University, Calcutta, India), and G. C. Chatterjee. Pyrithiamine adaptation of Staphylococcus aureus. II. Tricarboxylic acid cycle and related enzymes. J. Bacteriol. 86:1157-1164. 1963.-Evidence for the stimulated operation of the tricarboxylic acid cycle in Staphylococcus aureus after pyrithiamine adaptation is presented. In the cell-free extracts, isocitric, glutamic, malic, and succinic dehydrogenases and catalase were found to be stimulated after the adaptation of S. aureus to pyrithiamine. Besides such stimulation, the appearance of isocitratase and malate synthetase in the adapted strain supports the appearance of the glyoxalate bypass after such adaptation. There is little change in the activities of reduced nicotinamide adenine dinucleotide (NADH) and reduced nicotinamide adenine dinucleotide phosphate (NADPH) oxidases and diaphorase. Lactic dehydrogenase, NADH-cytochrome c reductase, and NADPH-cytochrome c reductase could not be demonstrated either in the normal or in the pyrithiamine-adapted S. aureus. These observations support the postulation that there is a stimulation in the tricarboxylic acid cycle and can account for the very marked stimulation in the utilization of acetate by the organism after adaptation.
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