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PMID: 1657175 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Red cell volume regulation: the pivotal role of ionic strength in controlling swelling-dependent transport systems.

Biochimica et biophysica acta ·Vol. 1075 ·No. 2 ·1991-10-10 ·Pages 169-80

Motais R, Guizouarn H, Garcia-Romeu F

Abstract

A volume increase of trout erythrocytes can be induced either by beta-adrenergic stimulation of a Na+/H+ antiport in an isotonic medium (isotonic swelling) or by suspending red cells in an hypotonic medium (hypotonic swelling). In both cases cells regulate their volume by a loss of osmolytes via specific pathways. After hypotonic swelling several volume-dependent pathways were activated allowing K+, Na+, taurine and choline to diffuse. All these pathways were fully inhibited by furosemide and inhibitors of the anion exchanger (DIDS, niflumic acid), and the K+ loss was mediated essentially via a 'Cl(-)-independent' pathway. After isotonic swelling, the taurine, choline and Na+ pathways were practically not activated and the K+ loss was strictly 'Cl(-)-dependent'. Thus cellular swelling is a prerequisite for activation of these pathways but, for a given volume increase, the degree of activation and the degree of anion-dependence of the K+ pathway depend on the nature of the stimulus, whether hormonal or by reduction of osmolality. It appears that the pattern of the response induced by hormonal stimulation is not triggered by either cellular cAMP (since it can be reproduced in the absence of hormone by isotonic swelling in an ammonium-containing saline) or by the tonicity of the medium in which swelling occurs since after swelling in an isotonic medium containing urea, the cells adopt the regulatory pattern normally observed after hypotonic swelling. We demonstrated that the stimulus is the change in cellular ionic strength induced by swelling: when ionic strength drops, the cells adopt the hypotonic swelling pattern; when ionic strength increases, the isotonic swelling pattern is activated. To explain this modulating effect of ionic strength a speculative model is proposed, which also allows the integration of two further sets of experimental results: (i) all the volume-activated transport systems are blocked by inhibitors of the anion exchanger and (ii) a Cl(-)-dependent, DIDS-sensitive K+ pathway can be activated in static volume trout red cells (i.e., in the absence of volume increase) by the conformational change of hemoglobin induced by the binding of O2 or CO to the heme.

MeSH Terms
Ammonium Chloride Animals Biological Transport Cell Membrane Permeability/drug effects Cyclic AMP/pharmacology Erythrocyte Membrane/drug effects,physiology Erythrocyte Volume/drug effects,physiology Hydrogen-Ion Concentration Hypotonic Solutions Isoproterenol/pharmacology Isotonic Solutions Osmolar Concentration Sodium Chloride Trout Urea
Chemicals
Hypotonic Solutions Isotonic Solutions Ammonium Chloride Sodium Chloride Urea Cyclic AMP Isoproterenol
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Motais R
Laboratoire Jean Maetz, Département de Biologie Cellulaire et Moléculaire du C.E.A., Villefranche-sur-Mer, France.
Guizouarn H
Garcia-Romeu F
Article Info
Journal
Biochimica et biophysica acta
Abbr.
Biochim Biophys Acta
ISSN
0006-3002
Published
1991-10-10
Pages
169-80
Language
English
Region
Netherlands
NLM ID
0217513
Subset
IM
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