KCl cotransport activity in light versus dense transferrin receptor-positive sickle reticulocytes.
Open Access
- 1 June 1995
- journal article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 95 (6) , 2573-2580
- https://doi.org/10.1172/jci117958
Abstract
A subset of sickle cells becomes K(+)-depleted and dehydrated before or soon after leaving the bone marrow. These young cells may be identified in blood as transferrin receptor-positive (TfR+) dense reticulocytes. KCl cotransport, which is normally active in young erythroid cells with a maximum at pH 6.8, is a candidate pathway for K+ depletion of sickle reticulocytes. In this investigation, KCl cotransport activity was evaluated in young, TfR+ cells which had become dense in vivo and in age-matched cells which had retained normal hydration. Sickle erythrocytes were first separated into three primary density fractions, with care taken to preserve the in vivo hydration state. After normalization of intracellular hemoglobin concentration with nystatin, the cells were incubated at 37 degrees C for 20 min at pH 6.8 and 7.4. Before and after incubation, each primary fraction was separated into four secondary density fractions. The percentage of TfR+ cells in each secondary fraction was measured and a density distribution for TfR+ cells was determined for each primary fraction before and after incubation. The density shift during incubation was a measure of KCl cotransport. TfR+ cells from the denser primary fractions II and III had significantly more density shift than TfR+ cells from the light fraction I. Although the shifts were larger at low pH, differences between primary fractions were also observed at pH 7.4. These data indicate that the cells which become dense quickly in vivo have more KCl cotransport activity than those which remain light in vivo, and support this pathway as a primary mechanism for dehydration of young sickle cells.Keywords
This publication has 25 references indexed in Scilit:
- Fetal hemoglobin and potassium in isolated transferrin receptor-positive dense sickle reticulocytes.1994
- Cation depletion by the sodium pump in red cells with pathologic cation leaks. Sickle cells and xerocytes.Journal of Clinical Investigation, 1986
- Volume‐dependent and NEM‐stimulated K+Cl−1 transport is elevated in oxygenated SS, SC and CC human red cellsFEBS Letters, 1986
- Regulation of Erythrocyte Cation and Water Content in Sickle Cell AnemiaScience, 1986
- HEMOGLOBIN-S POLYMERIZATION - PRIMARY DETERMINANT OF THE HEMOLYTIC AND CLINICAL SEVERITY OF THE SICKLING SYNDROMES1985
- Ionic and osmotic equilibria of human red blood cells treated with nystatin.The Journal of general physiology, 1979
- Requirements for therapeutic inhibition of sickle haemoglobin gelationNature, 1978
- STABILIZATION OF SHAPE OF SICKLED CELLS BY CALCIUM AND A231871976
- Separation of erythrocytes according to age on a simplified density gradient.1974
- Irreversibly sickled erythrocytes: a consequence of the heterogeneous distribution of hemoglobin types in sickle-cell anemiaJournal of Clinical Investigation, 1968