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Biomedical subjects

B Foder

Publications and source records attributed to B Foder.

22 records · Page 2Linked to original sources

Reversible shift between two states of Ca2+-ATPase in human erythrocytes mediated by Ca2+ and a membrane-bound activator.

The (Ca2+ + Mg2+)-dependent ATPase (ATP phosphohydrolase, EC 3.6.1.3) from human erythrocytes occurred in two different states, A-state and B-state, depending on the membrane preparation. The A-state showed low maximum activity (V) and the Ca2+ activation was characterized by a Hill coefficient, nH, of about 1 and a Michaelis constant, KCa, about 30 micron. The B-state showed high V, a nH above 1, which indicates positive cooperativity of Ca2+ activation, and KCa of about 1 micron. With varying ATP concentrations, both the A-state and B-state showed negative cooperativity and slightly different values of Km. The B-state was shifted to A-state when the membranes were exposed to low Ca2+ concentration. The shift reached 50% at approx. 0.5 micron Ca2+. At the low Ca2+ concentrations an activator was released from the membranes. The A-state was shifted to the B-state when the membranes were exposed to Ca2+ in the presence of the activator. The shift reached 50% at about 30 micron Ca2+. The recovery of high V was time dependent and lasted several minutes. Increasing concentrations of Ca2+ and activator accelerated the recovery. It is suggested that the A-state and the B-state correspond to enzyme free of activator and enzyme associated with activator, respectively. Furthermore, the two states may respresent a resting and an active state, respectively, of the calcium pump.

Adenosine Triphosphatases

Decreased (Ca2+ + Mg2+)-stimulated ATPase activity in erythrocyte membranes from polycythemia vera patients.

Erythrocytes were hemolyzed in hypotonic phospate buffer containing 0.5 mmol/l Ca2+ and the membranes subsequently washed twice in hypotonic tris buffer. The centrifugation was performed in a continuous flow system, which was necessary to obtain maximal ATPase activity. The Mg2+-dependent Ca2+-stimulated ATPase activity of 14 patients with polycythemia vera was only 67 per cent (P less than 0.001) of the activity of a control material consisting of 10 donors and 11 bank blood specimens. Five patients with secondary polycythemia and four patients with an increased erythrocyte fraction did not differ significantly from the controls. The polycythemia vera patients with the highest leukocyte count showed the lowest ATPase activity. The apparent calcium dissociation constant of the ATPase in polycythemia vera was about 10(-6) mol/l, as in controls. The relation between the reduced ATPase activity and the abnormal hemopoiesis of polycythemia vera patients is discussed.

Adenosine Triphosphatases