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Biochimica Et Biophysica Acta|February 2, 1979
Mathematical modelling of ATP, K+ and Na+ interactions with (Na+ + K+)-ATPase occurring under equilibrium conditionsR Grosse, T Rapoport, J Malur, et al.Acta Biologica Et Medica Germanica|January 1, 1975
Identification of the ouabain-binding peptide of (nak)-atpase)M Kott, E Spitzer, J Beer, et al.Biochemical Pharmacology|October 1, 1986
Origin of differences of inhibitory potency of cardiac glycosides in Na+/K+-transporting ATPase from human cardiac muscle, human brain cortex and guinea-pig cardiac muscleW Schönfeld, R Schönfeld, K H Menke, et al.Anti-Cancer Drug Design|March 1, 1995
Potential suitability of Na+/K(+)-transporting ATPase in pre-screens for anti-cancer agentsK R Repke, R Schön, R Megges, et al.Acta Biologica Et Medica Germanica|January 1, 1977
Determination and functional significance of low affinity nucleotide sites of Ca2+ + Mg2+ -dependent ATPase of sarcoplasmic reticulumK Eckert, R Grosse, D O Levitsky, et al.Circulation Research|April 1, 1994
Immunologic identification of Na+,K(+)-ATPase isoforms in myocardium. Isoform change in deoxycorticosterone acetate-salt hypertensionK J Sweadner, V L Herrera, S Amato, et al.Naunyn-Schmiedeberg'S Archives of Pharmacology|June 1, 1985
The lead structure in cardiac glycosides is 5 beta, 14 beta-androstane-3 beta 14-diolW Schönfeld, J Weiland, C Lindig, et al.Biochimica Et Biophysica Acta|January 22, 1988
The thermodynamic essence of the reversible inactivation of Na+/K+-transporting ATPase by various digitalis derivatives is relaxation of enzyme conformational energyJ Beer, R Kunze, I Herrmann, et al.Pageof 3