Volume-sensitive taurine transport in fish erythrocytes
暂无分享,去创建一个
[1] K. Fugelli. Gamma-aminobutyric acid (GABA) in fish erythrocytes , 1970, Experientia.
[2] E. Hoffmann,et al. Volume-induced increase of K+ and Cl− permeabilities in Ehrlich ascites tumor cells. Role of internal Ca2+ , 2005, The Journal of Membrane Biology.
[3] E. M. Tucker,et al. Genetic control of amino acid transport in sheep erythrocytes , 1982, Biochemical Genetics.
[4] E. Hoffmann,et al. The role of amino acids and taurine in isosmotic intracellular regulation in Ehrlich ascites mouse tumour cells , 2004, Journal of comparative physiology.
[5] Wilfred D. Stein,et al. Transport and Diffusion Across Cell Membranes , 1986 .
[6] W. Stein. CHAPTER 4 – Facilitated Diffusion: The Simple Carrier , 1986 .
[7] P. A. Richardson,et al. Adrenalin-induced Na+/H+ exchange in trout erythrocytes and its effects upon oxygen-carrying capacity , 1985 .
[8] J. Young,et al. Breed and species comparison of amino acid transport variation in equine erythrocytes. , 1985, Research in veterinary science.
[9] P. Kuchel,et al. Assimilation of alpha-glutamyl-peptides by human erythrocytes. A possible means of glutamate supply for glutathione synthesis. , 1985, The Biochemical journal.
[10] I. H. Lambert. Taurine transport in Ehrlich ascites tumour cells specificity and chloride dependence , 1985 .
[11] R. Motais,et al. A transient sodium‐hydrogen exchange system induced by catecholamines in erythrocytes of rainbow trout, Salmo gairdneri. , 1984, The Journal of physiology.
[12] J. Young,et al. Red cell amino acid transport. Evidence for the presence of system Gly in guinea pig reticulocytes. , 1984, Biochimica et biophysica acta.
[13] H. Christensen,et al. Organic ion transport during seven decades. The amino acids. , 1984, Biochimica et biophysica acta.
[14] P. Kuchel,et al. A proton n.m.r. study of iminodipeptide transport and hydrolysis in the human erythrocyte. Possible physiological roles for the coupled system. , 1984, The Biochemical journal.
[15] R. Motais,et al. Hormone‐induced co‐transport with specific pharmacological properties in erythrocytes of rainbow trout, Salmo gairdneri. , 1984, The Journal of physiology.
[16] A. Cossins,et al. Sodium and potassium transport in trout (Salmo gairdneri) erythrocytes. , 1984, The Journal of physiology.
[17] M. Inaba,et al. Increase of Na+ gradient-dependent L-glutamate and L-aspartate transport in high K+ dog erythrocytes associated with high activity of (Na+, K+)-ATPase. , 1984, The Journal of biological chemistry.
[18] I. H. Lambert. Na+-dependent taurine uptake in Ehrlich ascites tumour cells , 1984 .
[19] J. Young,et al. Red-cell amino acid transport. Evidence for the presence of system ASC in mature human red blood cells. , 1983, The Biochemical journal.
[20] M. Rao,et al. Na/K/Cl co-transport and its regulation. , 1983, The Journal of experimental biology.
[21] E. Hoffmann,et al. Amino acid transport and cell volume regulation in Ehrlich ascites tumour cells. , 1983, The Journal of physiology.
[22] H. Ginsburg,et al. Uptake of L-tryptophan by erythrocytes infected with malaria parasites (Plasmodium falciparum). , 1983, Biochimica et biophysica acta.
[23] N. Taniguchi,et al. Increase of Na-K-ATPase activity, glutamate, and aspartate uptake in dog erythrocytes associated with hereditary high accumulation of GSH, glutamate, glutamine, and aspartate , 1983 .
[24] P. Kuchel,et al. Proton NMR spectroscopic studies of dipeptidase in human erythrocytes. , 1983, Biochemical and biophysical research communications.
[25] J. Young,et al. Transport of amino acids for glutathione biosynthesis in human and dog red cells. , 1983, Biomedica biochimica acta.
[26] A. Cossins,et al. On the instability of K+ influx in erythrocytes of the rainbow trout, Salmo gairdneri, and the role of catecholamine hormones in maintaining in vivo influx activity. , 1982, The Journal of experimental biology.
[27] H. Christensen. Interorgan amino acid nutrition. , 1982, Physiological reviews.
[28] N. Taniguchi,et al. Hereditary high concentration of glutathione in canine erythrocytes associated with high accumulation of glutamate, glutamine, and aspartate. , 1982, Blood.
[29] H. Perrier,et al. Free amino acids and ninhydrin-positive substances in fish--II. Cardio-respiratory system: plasma, erythrocytes, heart and gills of the rainbow trout (Salmo gairdnerii Richardson). , 1982, Comparative biochemistry and physiology. B, Comparative biochemistry.
[30] J. Young,et al. Glycine transport in human erythrocytes. , 1981, The Journal of physiology.
[31] P. Dunham,et al. Passive potassium transport in low potassium sheep red cells: dependence upon cell volume and chloride. , 1981, The Journal of physiology.
[32] E. M. Tucker,et al. Red Cell Glutathione Deficiency: Clinical and Biochemical Investigations using Sheep as an Experimental Model System , 1981, British journal of haematology.
[33] Symposium on cell volume regulation. , 1981, The Journal of experimental zoology.
[34] B. Weiss,et al. PHARMACOLOGICAL REGULATION OF CALMODULIN * , 1980, Annals of the New York Academy of Sciences.
[35] E. M. Tucker,et al. Biochemical changes during reticulocyte maturation in culture. A comparison of genetically different sheep erythrocytes. , 1980, The Biochemical journal.
[36] K. Fugelli,et al. The effect of Na+ and osmolality on the influx and steady state distribution of taurine and gamma-aminobutyric acid in flounder (Platichthys flesus) erythrocytes , 1980 .
[37] T. Vislie. Cell volume regulation in isolated, perfused heart ventricle of the flounder (Platichthys flesus) , 1980 .
[38] R. P. Forster,et al. Amino acids and cell regulation. , 1979, The Yale journal of biology and medicine.
[39] E. M. Tucker,et al. Influence of arginase deficiency on amino acid concentrations in sheep erythrocytes with a normal and with a defective transport system for amino acids [proceedings]. , 1977, The Journal of physiology.
[40] R. P. Forster,et al. Free amino acids in tissues of the skate Raja erinacea and the stingray Dasyatis sabina: effects of environmental dilution. , 1977, The Journal of experimental zoology.
[41] J. Young,et al. Substrate specificity of amino acid transport in sheep erythrocytes. , 1977, The Biochemical journal.
[42] G. Vidaver,et al. Glycine transport by hemolysed and restored pigeon red cells. Effects of a Donnan-induced electrical potential on entry and exit kinetics. , 1976, Biochimica et biophysica acta.
[43] K. E. Zachariassen,et al. The distribution of taurine, gamma-aminobutyric acid and inorganic ions between plasma and erythrocytes in flounder (Platichthys flesus) at different plasma osmolalities. , 1976, Comparative biochemistry and physiology. A, Comparative physiology.
[44] T. Vislie,et al. Cell volume regulation in flounder (Platichthys flesus) heart muscle accompanying an alteration in plasma osmolality. , 1975, Comparative biochemistry and physiology. A, Comparative physiology.
[45] P. Greengard,et al. Regulation of protein phosphorylation and membrane permeability by beta-adrenergic agents and cyclic adenosine 3':5'-monophosphate in the avian erythrocyte. , 1974, The Journal of biological chemistry.
[46] E. M. Tucker,et al. The identification of ornithine and lysine at high concentrations in the red cells of sheep with an inherited deficiency of glutathione. , 1972, Biochimica et biophysica acta.
[47] G. Vidaver,et al. Anion effects on glycine entry into pigeon red blood cells. , 1972, Biochimica et biophysica acta.
[48] H. Christensen,et al. Cationic amino acid transport in the rabbit reticulocyte. Na+-dependent inhibition of Na+-independent transport. , 1969, The Journal of biological chemistry.
[49] H. Christensen. Some special kinetic problems of transport. , 1969, Advances in enzymology and related areas of molecular biology.
[50] H. Christensen,et al. Transport systems for neutral amino acids in the pigeon erythrocyte. , 1967, The Journal of biological chemistry.
[51] H. Christensen,et al. Interdependent fluxes of amino acids and sodium ion in the pigeon red blood cell. , 1967, The Journal of biological chemistry.
[52] K. Fugelli. Regulation of cell volume in flounder (Pleuronectes flesus) erythrocytes accompanying a decrease in plasma osmolarity. , 1967, Comparative biochemistry and physiology.
[53] H. Christensen,et al. Contrasts in neutral amino acid transport by rabbit erythrocytes and reticulocytes. , 1965, The Journal of biological chemistry.
[54] H. Christensen. RELATIONS IN THE TRANSPORT OF BETA-ALANINE AND THE ALPHA-AMINO ACIDS IN THE EHRLICH CELL. , 1964, The Journal of biological chemistry.
[55] G. Vidaver. TRANSPORT OF GLYCINE BY PIGEON RED CELLS. , 1964, Biochemistry.