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The active transport of sodium by ghosts of human red blood cells.
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Effects of membrane potential on sodium and potassium fluxes in squid axons.
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[Properties of a phosphorylated protein as a reaction intermediate of Na+-K+ sensitive ATPase].
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Formation and decomposition of a phosphorylated intermediate in the reaction of Na plus-K plus dependent ATPase.
J Biochem. 1970 May;67(5):693-711
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The ouabain-sensitive fluxes of sodium and potassium in squid giant axons.
J Physiol. 1969 Feb;200(2):459-96
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Nucleotide requirements for sodium-sodium exchange catalysed by the sodium pump in human red cells.
J Physiol. 1971 Oct;218(1):239-56
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The sensitivity of the sodium pump to external sodium.
J Physiol. 1967 Sep;192(1):175-88
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The interaction of sodium and potassium with the sodium pump in red cells.
J Physiol. 1973 Jun;231(2):297-325
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Activation by adenosine triphosphate in the phosphorylation kinetics of sodium and potassium ion transport adenosine triphosphatase.
J Biol Chem. 1972 Oct 25;247(20):6530-40
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The connexion between active cation transport and metabolism in erythrocytes.
Biochem J. 1965 Oct;97(1):214-27
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The behaviour of the sodium pump in red cells in the absence of external potassium.
J Physiol. 1967 Sep;192(1):159-74
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Sodium-activated adenosine triphosphatase activity of the erythrocyte membrane.
J Biol Chem. 1970 Jan 25;245(2):270-5
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A modle for active transport of sodium and potassium ions as mediated by a tetrameric enzyme.
Proc Natl Acad Sci U S A. 1973 Jan;70(1):275-8
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The coupling of sodium efflux and potassium influx in frog muscle.
J Physiol. 1965 Dec;181(4):865-80
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Allosteric inhibition of the sodium pump by external sodium.
Nature. 1975 May 22;255(5506):338-40
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Reversal of the potassium entry mechanism in red cells, with and without reversal of the entire pump cycle.
J Physiol. 1970 Apr;207(2):371-91
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The interaction of ATP-analogues possessing a blocked gamma-phosphate group with the sodium pump in human red cells.
J Physiol. 1975 Jan;244(3):731-9
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The sodium pump.
Annu Rev Physiol. 1975;37:13-55
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On the ATP dependence of the Ca 2+ -induced increase in K + permeability observed in human red cells.
Biochim Biophys Acta. 1971 Jun 1;233(3):827-30
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Synthesis of adenosine triphosphate and exchange between inorganic phosphate and adenosine triphosphate in sodium and potassium ion transport adenosine triphosphatase.
J Biol Chem. 1975 Apr 25;250(8):3010-8
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Membrane potential and conductance during transport of sodium, potassium and rubidium in frog muscle.
J Physiol. 1966 Jun;184(4):970-1014
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An uncoupled efflux of sodium ions from human red cells, probably associated with Na-dependent ATPase activity.
Ann N Y Acad Sci. 1974;242(0):461-70
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Consumption of high-energy phosphates during active sodium and potassium interchange in frog muscle.
J Physiol. 1966 Jan;182(1):92-109
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The significance of intermediary plateau regions in enzyme saturation curves.
Biochemistry. 1969 Nov;8(11):4656-63
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Potassium fluxes in dialyzed squid axons.
J Gen Physiol. 1969 Jun;53(6):704-40
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A second ouabain-sensitive sodium-dependent adenosine triphosphate in brain microsomes.
J Biol Chem. 1969 Dec 10;244(23):6493-7
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The kinetics of sodium extrusion in striated muscle as functions of the external sodium and potassium ion concentrations.
J Gen Physiol. 1971 Feb;57(2):164-87
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The concentration dependence of active potassium transport in the human red blood cell.
J Clin Invest. 1967 Jan;46(1):65-76
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On the specificity of the ATP-binding site of (Na+ + K+)-activated ATPase from brain microsomes.
Biochim Biophys Acta. 1971 Apr 13;233(2):395-403
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A PHOSPHORYLATED INTERMEDIATE IN ADENOSINE TRIPHOSPHATE-DEPENDENT SODIUM AND POTASSIUM TRANSPORT ACROSS KIDNEY MEMBRANES.
J Biol Chem. 1965 Mar;240:1437-45
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Binding of adenosine triphosphate to sodium and potassium ion-stimulated adenosine triphosphatase.
J Biol Chem. 1971 Sep 10;246(17):5234-40
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Binding of ATP to brain microsomal ATPase. Determination of the ATP-binding capacity and the dissociation constant of the enzyme-ATP complex as a function of K+ concentration.
Biochim Biophys Acta. 1971 Mar 9;233(1):104-16
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Competitive effects of some cations on active potassium transport in the human red blood cell.
J Clin Invest. 1967 Sep;46(9):1433-41
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Interaction of external K, Na, and cardioactive steroids with the Na-K pump of the human red blood cell.
J Gen Physiol. 1974 Feb;63(2):123-43
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The effects of an antiserum to Na+, K+-ATPase on the ion-transporting and hydrolytic activities of the enzyme.
Ann N Y Acad Sci. 1974;242(0):357-71
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STOICHIOMETRY AND LOCALIZATION OF ADENOSINE TRIPHOSPHATE-DEPENDENT SODIUM AND POTASSIUM TRANSPORT IN THE ERYTHROCYTE.
J Biol Chem. 1964 Jan;239:345-52
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Phosphorylation of bovine brain Na + , K + -stimulated ATP phosphohydrolase by adenosine ( 32 P)triphosphate studied by a rapid-mixing technique.
Biochim Biophys Acta. 1972 Jan 17;255(1):231-8
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Flip-flop model of (NaK)-ATPase function.
Acta Biol Med Ger. 1973;31(4):Suppl:K19-30
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Phosphorus metabolism of intact crab nerve and its relation to the active transport of ions.
J Physiol. 1965 Sep;180(2):383-423
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ATP hydrolysis associated with an uncoupled efflux of Na through the Na pump.
J Physiol. 1975 Aug;250(1):33P-34P
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The uncoupled extrusion of Na+ through the Na+ pump.
Biochim Biophys Acta. 1973 Oct 11;323(2):251-66
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Studies on sodium-potassium-activated adenosinetriphosphatase. V. Correlation of enzyme activity with cation flux in six tissues.
Arch Biochem Biophys. 1963 Apr;101:37-46
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Potential-dependent membrane current during the active transport of ions in snail neurones.
J Physiol. 1972 Oct;226(2):373-92
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Phosphorylation by inorganic phosphate of sodium plus potassium ion transport adenosine triphosphatase. Four reactive states.
J Biol Chem. 1975 Jan 25;250(2):691-701
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The influence of external sodium ions on the sodium pump in erythrocytes.
Biochem J. 1968 Sep;109(3):369-74
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A new member of the ATPase family.
Am J Physiol. 1967 Sep;213(3):786-92
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