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PMID: 2430999 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Cation depletion by the sodium pump in red cells with pathologic cation leaks. Sickle cells and xerocytes.

The Journal of clinical investigation ·Vol. 78 ·No. 6 ·1986-12-00 ·Pages 1487-96

Joiner CH, Platt OS, Lux SE

Abstract

The mechanism by which sickle cells and xerocytic red cells become depleted of cations in vivo has not been identified previously. Both types of cells exhibit elevated permeabilities to sodium and potassium, in the case of sickle cells, when deoxygenated. The ouabain-insensitive fluxes of sodium and potassium were equivalent, however, in both cell types under these conditions. When incubated 18 hours in vitro, sickle cells lost cations but only when deoxygenated. This cation depletion was blocked by ouabain, removal of external potassium, or pretreatment with 4,4'-diisothiocyanostilbene-2,2'-disulfonate, which blocks the increase in cation permeability induced by deoxygenation. The loss of cation exhibited by oxygenated xerocytes similarly incubated was also blocked by ouabain. These data support the hypothesis that the elevated "passive" cation fluxes of xerocytes and deoxygenated sickle cells are not directly responsible for cation depletion of these cells; rather, these pathologic leaks interact with the sodium pump to produce a net loss of cellular cation.

MeSH Terms
4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid 4-Acetamido-4'-isothiocyanatostilbene-2,2'-disulfonic Acid/analogs & derivatives,pharmacology Anemia, Hemolytic, Congenital/blood Anemia, Sickle Cell/blood Biological Transport Calcium/physiology Dehydration/blood Erythrocytes/metabolism Hemoglobins/analysis Humans Ion Channels/physiology Ouabain/pharmacology Potassium/metabolism Sodium/metabolism
Chemicals
Hemoglobins Ion Channels 4-Acetamido-4'-isothiocyanatostilbene-2,2'-disulfonic Acid Ouabain Sodium 4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid Potassium Calcium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Joiner C H
Platt O S
Lux S E
References (45)
45 references, click to expand
  1. The stoicheiometry of the sodium pump.
    J Physiol. 1967 Sep;192(1):217-35 PMID: 4228075
  2. Irreversibly sickled cells and red cell survival in sickle cell anemia: a study with both DF32P and 51CR.
    Am J Med. 1978 Feb;64(2):253-8 PMID: 629275
  3. A new variant of hereditary hemolytic anemia with stomatocytosis and erythrocyte cation abnormality.
    Blood. 1971 Aug;38(2):184-204 PMID: 5559828
  4. Co-ordinated increase of sodium leak and sodium pump in hereditary spherocytosis.
    Br J Haematol. 1972 May;22(5):529-42 PMID: 4260663
  5. The interaction of sodium and potassium with the sodium pump in red cells.
    J Physiol. 1973 Jun;231(2):297-325 PMID: 4720935
  6. Congenital hemolytic anemia associated with dehydrated erythrocytes and increased potassium loss.
    N Engl J Med. 1974 Sep 5;291(10):491-6 PMID: 4851153
  7. Water distribution in blood during sickling of erythrocytes.
    Blood. 1978 Apr;51(4):703-9 PMID: 630117
  8. Cation permeability alterations during sickling: relationship to cation composition and cellular hydration of irreversibly sickled cells.
    Blood. 1978 May;51(5):983-9 PMID: 638256
  9. Monovalent cation transport in irreversibly sickled cells.
    J Clin Invest. 1978 Aug;62(2):329-37 PMID: 149799
  10. Modulation of ouabain binding and potassium pump fluxes by cellular sodium and potassium in human and sheep erythrocytes.
    J Physiol. 1978 Oct;283:177-96 PMID: 722574
  11. Effects of abnormal cation transport on deformability of desiccytes.
    J Supramol Struct. 1978;8(4):521-32 PMID: 723280
  12. Membrane abnormalities of irreversibly sickled cells.
    Semin Hematol. 1979 Jan;16(1):52-64 PMID: 424775
  13. Deformability of oxygenated irreversibly sickled cells.
    J Clin Invest. 1980 Jan;65(1):189-96 PMID: 7350198
  14. Osmoregulatory salt transporting mechanisms: control of cell volume in anisotonic media.
    Annu Rev Physiol. 1981;43:493-505 PMID: 7011197
  15. Effect of a 'sickling pulse' on calcium and potassium transport in sickle cell trait red cells.
    J Physiol. 1981 Mar;312:265-80 PMID: 7264994
  16. pH dependency of potassium efflux from sickled red cells.
    Am J Hematol. 1981;11(1):19-27 PMID: 6267938
  17. Exercise-induced hemolysis in xerocytosis. Erythrocyte dehydration and shear sensitivity.
    J Clin Invest. 1981 Sep;68(3):631-8 PMID: 7276163
  18. Study on the dehydrating effect of the red cell Na+/K+-pump in nystatin-treated cells with varying Na+ and water contents.
    Biochim Biophys Acta. 1981 Sep 7;646(3):422-32 PMID: 7284370
  19. Outward sodium and potassium cotransport in human red cells.
    J Membr Biol. 1981;62(3):169-74 PMID: 7328628
  20. Exercise-induced hemolysis in sickle cell anemia: shear sensitivity and erythrocyte dehydration.
    Blood. 1982 May;59(5):1055-60 PMID: 7074213
  21. Evidence for imbalanced furosemide-sensitive Na+, K+ cotransport in hereditary stomatocytosis.
    Scand J Haematol. 1981 Nov;27(5):365-73 PMID: 7346999
  22. Heterogeneity of red cells in the sickler: a characteristic with practical clinical and pathophysiological implications.
    Blood Cells. 1982;8(1):9-15 PMID: 7115982
  23. Hydration of sickle cells using the sodium ionophore Monensin. A model for therapy.
    J Clin Invest. 1982 Nov;70(5):1074-80 PMID: 7130394
  24. Kinetics of sickle haemoglobin polymerization in single red cells.
    Nature. 1982 Nov 11;300(5888):194-7 PMID: 7133139
  25. The effect of deoxygenation on red cell density: significance for the pathophysiology of sickle cell anemia.
    Blood. 1982 Dec;60(6):1370-7 PMID: 6291676
  26. Chloride net efflux from intact erythrocytes under slippage conditions. Evidence for a positive charge on the anion binding/transport site.
    J Gen Physiol. 1983 Jan;81(1):127-52 PMID: 6833995
  27. Erythrocytes in sickle cell anemia are heterogeneous in their rheological and hemodynamic characteristics.
    J Clin Invest. 1983 Jul;72(1):22-31 PMID: 6874947
  28. Regulation of cation content and cell volume in hemoglobin erythrocytes from patients with homozygous hemoglobin C disease.
    J Clin Invest. 1985 May;75(5):1608-17 PMID: 3998150
  29. Alpha thalassemia changes erythrocyte heterogeneity in sickle cell disease.
    J Clin Invest. 1985 May;75(5):1632-7 PMID: 2581999
  30. Cell heterogeneity in sickle cell disease: quantitation of the erythrocyte density profile.
    J Lab Clin Med. 1985 Jul;106(1):30-7 PMID: 4009021
  31. Monovalent cation changes in sickle erythrocytes: a direct reflection of alpha-globin gene number.
    J Lab Clin Med. 1985 Jul;106(1):75-9 PMID: 4009025
  32. Passive sodium and potassium movements in sickle erythrocytes.
    Am J Physiol. 1985 Sep;249(3 Pt 1):C208-14 PMID: 4037070
  33. Endocytosis in sickle erythrocytes: a mechanism for elevated intracellular Ca2+ levels.
    J Cell Physiol. 1986 Jan;126(1):53-9 PMID: 2418037
  34. Regulation of erythrocyte cation and water content in sickle cell anemia.
    Science. 1986 Apr 18;232(4748):388-90 PMID: 3961486
  35. Potassium and sodium of red blood cells in sickle cell anemia.
    J Clin Invest. 1952 Apr;31(4):406-11 PMID: 14917761
  36. The effects of sickling on ion transport. I. Effect of sickling on potassium transport.
    J Gen Physiol. 1955 Sep 20;39(1):31-53 PMID: 13252234
  37. DETERMINATION OF DENSITY DISTRIBUTION OF RED CELL POPULATION.
    J Lab Clin Med. 1964 Oct;64:668-74 PMID: 14233155
  38. The contribution of normal and pathologic erythrocytes to blood rheology.
    Prog Hematol. 1971;7(0):1-31 PMID: 4950833
  39. Red cells shrink during sickling.
    Blood. 1974 Dec;44(6):885-9 PMID: 4429804
  40. Characteristics of the membrane defect in the hereditary stomatocytosis syndrome.
    Blood. 1975 Sep;46(3):337-56 PMID: 1148392
  41. The effect of anti-L on ouabain binding to sheep erythrocytes.
    J Membr Biol. 1975 Apr 23;21(1-2):99-112 PMID: 1195342
  42. Determinants of red cell sickling. Effects of varying pH and of increasing intracellular hemoglobin concentration by osmotic shrinkage.
    J Lab Clin Med. 1976 Apr;87(4):597-616 PMID: 5563
  43. Supersaturation in sickle cell hemoglobin solutions.
    Proc Natl Acad Sci U S A. 1976 Sep;73(9):3035-9 PMID: 9640
  44. Selective loss of calcium permeability on maturation of reticulocytes.
    J Clin Invest. 1977 Jun;59(6):1113-9 PMID: 864005
  45. Irreversibly sickled erythrocytes: a consequence of the heterogeneous distribution of hemoglobin types in sickle-cell anemia.
    J Clin Invest. 1968 Aug;47(8):1731-41 PMID: 5666109
Article Info
Journal
The Journal of clinical investigation
Abbr.
J Clin Invest
ISSN
0021-9738
Published
1986-12-00
Pages
1487-96
Language
English
Region
United States
NLM ID
7802877
PMCID
PMC423903
Subset
IM
Grants
NHLBI NIH HHS · 5P60-HL15157 · United States
NHLBI NIH HHS · HL-32805 · United States
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