On the analysis of futile cycles in metabolism.
暂无分享,去创建一个
[1] F. L. Alvares,et al. Quantitative correlation of glucose uptake and phosphorylation with the activities of glucose-phosphorylating enzymes in perfused livers of fasted and fed rats. , 1977, The Journal of biological chemistry.
[2] J. Katz,et al. Role of pyruvate kinase in the regulation of gluconeogenesis from L-lactate. , 1977, The Journal of biological chemistry.
[3] J. Blum,et al. Quantitative analysis of the change of metabolite fluxes along the pentose phosphate and glycolytic pathways in Tetrahymena in response to carbohydrates. , 1977, The Journal of biological chemistry.
[4] R. Hanson,et al. Increase in level of functional messenger RNA coding for phosphoenolpyruvate carboxykinase (GTP) during induction by cyclic adenosine 3':5'-monophosphate. , 1977, The Journal of biological chemistry.
[5] H. Hers. The usefulness of 'futile cycles'. , 1976, Biochemical Society Transactions.
[6] L. Hue. The use of [14C,3H] glucose in the study of so-called 'futile cycles' in liver. , 1976, Biochemical Society transactions.
[7] J. Katz,et al. Effects of hormones and of ethanol on the fructose 6-P-fructose 1,6-P2 futile cycle during gluconeogenesis in the liver. , 1976, Archives of biochemistry and biophysics.
[8] I. Brand,et al. In vivo and in vitro interconversions of active and inactive forms of phosphofructokinase in rat liver , 1976, FEBS letters.
[9] G. Cottam,et al. Alteration in liver pyruvate kinase protein and catalytic acitivity upon starvation and refeeding. , 1976, Archives of biochemistry and biophysics.
[10] J. B. Blair,et al. Hepatic pyruvate kinase. Regulation by glucagon, cyclic adenosine 3'-5'-monophosphate, and insulin in the perfused rat liver. , 1976, The Journal of biological chemistry.
[11] V. Titanji,et al. Regulation in vitro of rat liver pyruvate kinase by phosphorylation-dephosphorylation reactions, catalyzed by cyclic-AMP dependent protein kinases and a histone phosphatase. , 1976, Biochimica et biophysica acta.
[12] P. Wals,et al. Recycling of glucose by rat hepatocytes. , 1975, European journal of biochemistry.
[13] I. Brand,et al. Activation and inactivation of rat liver phosphofructokinase by phosphorylation—dephosphorylation , 1975, FEBS letters.
[14] O. Meyuhas,et al. Glucocorticoids and the regulation of phosphoenolpyruvate carboxykinase (guanosine triphosphate) in the rat. , 1975, The Biochemical journal.
[15] R. Barsotti,et al. The reversibility of skeletal muscle pyruvate kinase and an assessment of its capacity to support glyconeogenesis. , 1975, The Journal of biological chemistry.
[16] J. Garrison,et al. The hormonal control of gluconeogenesis by regulation of mitochondrial pyruvate carboxylation in isolated rat liver cells. , 1975, The Journal of biological chemistry.
[17] R. Rognstad. Cyclic AMP induced inhibition of pyruvate kinase flux in the intact liver cell. , 1975, Biochemical and biophysical research communications.
[18] S. Weinhouse,et al. The regulation of carbon flow through pyruvate dehydrogenase in the perfused guinea pig liver. , 1975, Biochemical and biophysical research communications.
[19] M. Clark,et al. The fructose 1,6-diphosphatase-phosphofructokinase substrate cycle. A site of regulation of hepatic gluconeogenesis by glucagon. , 1974, The Journal of biological chemistry.
[20] L. Hue,et al. Utile and futile cycles in the liver. , 1974, Biochemical and biophysical research communications.
[21] L. Hue,et al. On the use of (3H, 14C)labelled glucose in the study of the so-called "futile cycles" in liver and muscle. , 1974, Biochemical and biophysical research communications.
[22] W. Seubert,et al. The intracellular location of pyruvate carboxylase in rat liver. , 1974, European journal of biochemistry.
[23] P. Holland,et al. Estimation of the fructose 1,6-diphosphatase-phosphofructokinase substrate cycle and its relationship to gluconeogenesis in rat liver in vivo. , 1974, The Journal of biological chemistry.
[24] J. Katz,et al. Relationship between isotopic reversibility and futile cycles in isolated rat liver parenchymal cells. , 1973, Biochemical and biophysical research communications.
[25] P. Holland,et al. Accelerated Substrate Cycling of Fructose-6-phosphate in the Muscle of Malignant Hyperthermic Pigs , 1973, Nature.
[26] J. Garrison,et al. Hormonal control of glycogenolysis and gluconeogenesis in isolated rat liver cells. , 1973, The Journal of biological chemistry.
[27] P. Holland,et al. Estimation of the fructose diphosphatase-phosphofructokinase substrate cycle in the flight muscle of Bombus affinis. , 1973, The Biochemical journal.
[28] F. Ballard,et al. Synthesis and degradation of phosphoenolpyruvate carboxylase in rat liver and adipose tissue. Changes during a starvation-re-feeding cycle. , 1973, The Biochemical journal.
[29] S. J. Higgins,et al. The activities of fructose diphosphatase in flight muscles from the bumble-bee and the role of this enzyme in heat generation. , 1972, The Biochemical journal.
[30] J. Stucki,et al. Regulation of Pyruvate Metabolism in Rat‐Liver Mitochondria by Adenine Nucleotides and Fatty Acids , 1972 .
[31] J. Brosnan,et al. Effects of ischaemia on content of metabolites in rat liver and kidney in vivo. , 1970, The Biochemical journal.
[32] B. Crabtree,et al. The role of fructose‐1,6‐diphosphatase in the regulation of glycolysis in skeletal muscle , 1970, FEBS letters.
[33] R. Hanson,et al. Purification of phosphoenolpyruvate carboxykinase from the cytosol fraction of rat liver and the immunochemical demonstration of differences between this enzyme and the mitochondrial phosphoenolpyruvate carboxykinase. , 1969, Journal of Biological Chemistry.
[34] H. Rasmussen,et al. Regulation of pyruvate carboxylase activity by calcium in intact rat liver mitochondria. , 1969, The Journal of biological chemistry.
[35] M. Utter,et al. The Regulation of Glycolysis and Gluconeogenesis in Animal Tissues , 1968 .
[36] H. Krebs,et al. The redox state of free nicotinamide-adenine dinucleotide in the cytoplasm and mitochondria of rat liver. , 1967, The Biochemical journal.
[37] H. Kornberg,et al. Net formation of phosphoenolpyruvate from pyruvate by Escherichia coli. , 1965, Biochimica et biophysica acta.
[38] J. Changeux,et al. ON THE NATURE OF ALLOSTERIC TRANSITIONS: A PLAUSIBLE MODEL. , 1965, Journal of molecular biology.
[39] A. Renold,et al. Blood glucose and the liver. , 1959, The American journal of medicine.
[40] S. Weinhouse,et al. Regulation of glucokinase in liver. , 1976, Current topics in cellular regulation.
[41] B. Crabtree. Theoretical considerations of the sensitivity conferred by substrate cycles in vivo. , 1976, Biochemical Society transactions.
[42] J. Larner,et al. Glycogen Synthase and Its Control , 1971 .
[43] W. Seubert,et al. The Regulation of Pyruvate Kinase , 1971 .
[44] H. Krebs. Rate control of the tricarboxylic acid cycle. , 1970, Advances in enzyme regulation.
[45] H. Krebs,et al. The Role of Equilibria in the Regulation of Metabolism , 1969 .
[46] H. Krebs. The redox state of nicotinamide adenine dinucleotide in the cytoplasm and mitochondria of rat liver. , 1967, Advances in enzyme regulation.
[47] D. Koshland,et al. Comparison of experimental binding data and theoretical models in proteins containing subunits. , 1966, Biochemistry.
[48] S. Weinhouse,et al. Fructose metabolism and kinetic properties of rabbit liver aldolase , 1965 .
[49] M. Utter,et al. A possible role for acetyl CoA in the control of gluconeogenesis. , 1964, Advances in enzyme regulation.