Metabolic control of the K+ channel of human red cells
- 1 June 1990
- journal article
- research article
- Published by Springer Nature in The Journal of Membrane Biology
- Vol. 116 (1) , 19-29
- https://doi.org/10.1007/bf01871668
Abstract
Summary The effects of cAMP, ATP and GTP on the Ca2+-dependent K+ channel of fresh (1–2 days) or cold-stored (28–36 days) human red cells were studied using atomic absorption flame photometry of Ca2+-EGTA loaded ghosts which had been resealed to monovalent cations in dextran solutions. When high-K+ ghosts were incubated in an isotonic Na+ medium, the rate constant of Ca2+-dependent K+ efflux was reduced by a half on increasing the theophylline concentration to 40mm. This effect was observed in ghosts from both fresh and stored cells, but only if they were previously loaded with ATP. The inhibition was more marked when Mg2+ was added together with ATP, and it was abolished by raising free Ca2+ to the micromolar level. Like theophylline, isobutyl methylxanthine (10mm) also affected K+ efflux. cAMP (0.2–0.5mm), added both internally and externally (as free salt, dibutyryl or bromide derivatives), had no significant effect on K+ loss when the ghost free-Ca2+ level was below 1 μm, but it was slightly inhibitory at higher concentrations. The combined presence of cAMP (0.2mm) plus either theophylline (10mm), or isobutyl methylxanthine (0.5mm), was more effective than cAMP alone. This inhibition showed a strict requirement for ATP plus Mg2+ and it, was not overcome by raising internal Ca2+. Ghosts from stored cells seemed more sensitive than those from fresh cells, to the combined action of cAMP and methylxanthines. Loading ATP into ghosts from fresh or stored cells markedly decreased K+ loss. Although this effect was observed in the absence of added Mg2+ (0.5mm EDTA present), it was potentiated upon adding 2mm Mg2+. The K+ efflux from ATP-loaded ghosts was not altered by dithio-bis-nitrobenzoic acid (10mm) or acridine orange (100 μm), while it was increased two-to fourfold by incubating with MgF2 (10mm), or MgF2 (10mm)+theophylline (40mm), respectively. By contrast, a marked efflux reduction was obtained by incorporating 0.5mm GTP into ATP-containing ghosts. The degree of phosphorylation obtained by incubating membranes with (ψ-32P)ATP under various conditions affecting K+ channel activity, was in direct correspondence to their effect on K+ efflux. The results suggest that the K+ channel of red cells is under complex metabolic control, via cAMP-mediated and nonmediated mechanisms, some which require ATP and presumably, involve phosphorylation of the channel proteins.Keywords
This publication has 54 references indexed in Scilit:
- All or none cell responses of Ca2+-dependent K channels elicited by calcium or lead in human red cells can be explained by heterogeneity of agonist distributionThe Journal of Membrane Biology, 1988
- Modulation of Ca2+-dependent K+ transport by modifications of the NAD+/NADH ratio in intact human red cellsBiochimica et Biophysica Acta (BBA) - Biomembranes, 1986
- ATP-sensitive inward rectifier and voltage- and calcium-activated K+ channels in cultured pancreatic islet cellsThe Journal of Membrane Biology, 1985
- Ca2+-dependent K+ permeability of heart sarcolemmal vesicles. Modulation by cAMP-dependent protein kinase activity and by calmodulinBiochemical and Biophysical Research Communications, 1984
- Are the anti-allergic actions of theophylline due to antagonism at the adenosine receptorInflammation Research, 1980
- Is the Ca2+-sensitive K+ channel under metabolic control in human red cells?Biochimica et Biophysica Acta (BBA) - Biomembranes, 1978
- Role of membrane-bound Ca in ghost permeability to Na and KThe Journal of Membrane Biology, 1976
- Phosphoprotein phosphatase of the human erythrocyteBiochemical and Biophysical Research Communications, 1976
- Adenyl cyclase activity in human plateletsBiochemical and Biophysical Research Communications, 1969
- The function of calcium in the potassium permeability of human erythrocytesBiochimica et Biophysica Acta, 1958