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Bahr, J. T. and Bonner, W. D (1973). Cyanide-insensitive respiration. I. The steady states of skunk cabbage spadix and bean hypocotyl mitochondria. J. Biol. Chem 248, 3441-.[Abstract/Free Full Text]

Bayne, B. L (1971). Oxygen consumption by three species of lamellibranch mollusc in declining oxygen tension at reduced salinity. Comp. Biochem. Physiol 40, 955-.

Bertsova, Y. V., Bogachev, A. V. and Skulachev, V. P (1997). Generation of protonic potential by the bd-type quinol oxidase of Azotobacter vinlandii. FEBS Lett 414, 369-.[Medline]

Bingham, I. J. and Stevenson, E. A (1995). Causes and location of non-specific effects of SHAM on O2uptake by wheat roots. Physiol. Plant 93, 427-.

Boveris, A., Martino, E. and Stoppani, A. O. M (1977). Evaluation of the horseradish peroxidase\320scopoletin method for the measurement of hydrogen peroxide formation in biological systems. Analyt. Biochem 80, 145-.[Medline]

Brand, M. D (1990). The contribution of the leak of protons across the mitochondrial inner membrane to standard metabolic rate. J. Theor. Biol 145, 267-.[Medline]

Brand, M. D., Chien, L.-F., Ainscow, E. K., Rolfe, D. F. S. and Porter, R. K (1994). The causes and function of mitochondrial proton leak. Biochim. Biophys. Acta 1187, 132-.[Medline]

Brierley, G. P., Jurkowitz, M. S., Farooqui, T. and Jung, G. W (1984). K+/H+antiport in heart mitochondria. J. Biol. Chem 259, 14672-.[Abstract/Free Full Text]

Brookes, P. S., Buckingham, J. A., Tenreiro, A. M., Hulbert, A. J. and Brand, M. D (1998). The proton permeability of the inner membrane of liver mitochondria from ectothermic and endothermic vertebrates and from obese rats: correlations with standard metabolic rate and phospholipid fatty acid composition. Comp. Biochem. Physiol 119, 325-.

Chance, B. and Williams, G. R (1955). Respiratory enzymes in oxidative phosphorylation. I. Kinetics of oxygen utilization. J. Biol. Chem 217, 383-.[Free Full Text]

Cheah, K. S (1973). The oxidase system of Monieza expansa (Cestoda). Comp. Biochem. Physiol 23, 277-.

D'Mello, R., Hill, S. and Poole, R. K (1994). Determination of the oxygen affinities of terminal oxidases in Azotobacter vinlandii using the deoxygenation of oxyleghaemoglobin and oxymyoglobin: cytochrome bd is a low-affinity oxidase. Microbiol 140, 1395-.

Estabrook, R. W (1967). Mitochondrial respiratory control and the polarographic measurements in mitochondria. Meth. Enzymol 10, 41-.

Freeman, B. A. and Crapo, J. D (1981). Hyperoxia increase oxygen radical production in rat lungs and lung mitochondria. J. Biol. Chem 256, 10986-.[Free Full Text]

Gnaiger, E., Steinlechner-Maran, R., Mendez, G., Eberl, T. and Margreiter, R (1995). Control of mitochondrial and cellular respiration by oxygen. J. Bioenerg. Biomembr 27, 583-.[Medline]

Goyal, N. and Srivastava, V. M. L (1995). Oxidation and reduction of cytochrome c by mitochondrial enzymes of Setaria cervi. J. Helminthol 69, 13-.[Medline]

Hafner, R. P., Brown, G. C. and Brand, M. D (1990). Analysis of the control of respiration rate, phosphorylation rate, proton leak rate and protonmotive force in isolated mitochondria using the \324top-down' approach of metabolic control theory. Eur. J. Biochem 188, 313-.[Medline]

Hand, S. C. and Somero, G. M (1983). Energy metabolic pathways3368of hydrothermal vent animals: Adaptation to food-rich and sulfide-rich deep-sea environments. Biol. Bull 165, 167-.[Abstract/Free Full Text]

Khazanov, V. A., Poborsky, A. N. and Kondrashova, M. N (1992). Air saturation of the medium reduces the rate of phosphorylating oxidation of succinate in isolated mitochondria. FEBS Lett 314, 264-.[Medline]

Masini, A., Ceccarelli-Stanzani, D. and Muscatello, U (1983). Phosphorylating efficiency of isolated rat liver mitochondria respiring under the conditions of steady-state 4. Biochim. Biophys. Acta 724, 251-.[Medline]

Mendis, A. H. W. and Evans, A. A. F (1984). First evidence for the occurrence of cytochrome o in a free-living nematode. Comp. Biochem. Physiol 78, 729-.

Minghetti, K. C. and Gennis, R. B (1988). The two terminal oxidases of the aerobic respiratory chain of Escherichia coli each yield water and not peroxide as a final product. Biochem. Biophys. Res. Commun 155, 243-.[Medline]

Moyes, C. D., Moon, T. W. and Ballantyne, J. S (1985). Glutamate catabolism in mitochondria from Mya arenaria mantle: Effects of pH on the role of glutamate dehydrogenase. J. Exp. Zool 236, 293-.

Njogu, R. M., Whittaker, C. J. and Hill, D. C (1980). Evidence for a branched electron transport chain in Trypanosoma brucei. Mol. Biochem. Parasitol 1, 13-.[Medline]

O'Brien, J. and Vetter, R. D (1990). Production of thiosulphate during sulphide oxidation by mitochondria of the symbiont-containing bivalve Solemya reidi. J. Exp. Biol 149, 133-.[Abstract/Free Full Text]

Oshino, N., Sugano, T. R., Oshino, R. and Chance, B (1974). Mitochondrial function under hypoxic conditions: The steady states of cytochrome a + a 3and their relation to mitochondrial energy states. Biochim. Biophys. Acta 368, 298-.[Medline]

Paget, T. A., Fry, M. and Lloyd, D (1987). Effects of inhibitors on the oxygen kinetics of Nippostrongylus brasiliensis. Mol. Biochem. Parasitol 22, 125-.[Medline]

Paget, T. A., Fry, M. and Lloyd, D (1987). Hydrogen peroxide production in uncoupled mitochondria of the parasitic nematode worm Nippostrongylus brasiliensis. Biochem. J 243, 589-.[Medline]

Paget, T. A., Fry, M. and Lloyd, D (1988). Haemoprotein terminal oxidases in the nematodes Nippostrongylus brasiliensis and Ascaridia galli. Biochem. J 256, 295-.[Medline]

Paget, T. A., Fry, M. and Lloyd, D (1988). The O2-dependence of respiration and H2O2production in the parasitic nematode Ascaridia galli. Biochem. J 256, 633-.[Medline]

Popov, V. N., Simonian, R. A., Skulachev, V. P. and Starkov, A. A (1997). Inhibition of the alternative oxidase simulates H2O2production in plant mitochondria. FEBS Lett 415, 87-.[Medline]

P\232rtner, H. O., Heisler, N. and Grieshaber, M. K (1985). Oxygen consumption and mode of energy production in the intertidal worm Sipunculus nudus L.: definition and characterization of the critical P Ofor an oxyconformer. Respir. Physiol 59, 361-.[Medline]

Schonbaum, G. R., Bonner, W. D., Storey, B. T. and Bahr, J. T (1971). Specific inhibition of the cyanide-insensitive respiratory pathway in plant mitochondria by hydroxamic acids. Plant Physiol 47, 124-.[Abstract/Free Full Text]

Schroff, G. and Sch\232ttler, U (1977). Anaerobic reduction of fumarate in the body wall musculature of Arenicola marina (Polychaeta). J. Comp. Physiol 116, 325-.

Shumway, S. E (1979). The effects of body size, oxygen tension and mode of life on the oxygen uptake rates of polychaetes. Comp. Biochem. Physiol 64, 273-.

Skulachev, V. P (1996). Role of uncoupled and non-coupled oxidations in maintenance of safely low levels of oxygen and its one-electron reductants. Q. Rev. Biophys 29, 169-.[Medline]

Taylor, A. C. and Brand, A. R (1975). A comparative study of the respiratory responses of the bivalves Arcticaislandica (L.) and Mytilus edulis (L.) to declining oxygen tension. Proc. R. Soc. Lond. B 190, 443-.[Medline]

Webster, D. A (1975). The formation of hydrogen peroxide during the oxidation of reduced nicotinamide adenine dinucleotide by cytochrome o from Vitreoscilla. J. Biol. Chem 250, 4955-.[Abstract/Free Full Text]

Wibom, R., Lundin, A. and Hultman, E (1990). A sensitive method for measuring ATP-formation in rat muscle mitochondria. Scand. J. Clin. Lab. Invest 50, 143-.[Medline]

Wieser, W (1985). Developmental and metabolic constraints of the scope of activity in young rainbow trout ( Salmo gairdneri ). J. Exp. Biol 118, 133-.[Abstract/Free Full Text]




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