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Kinetics of extracellular ATP in mastoparan 7-activated human erythrocytes
Authors:Marí  a Florencia Leal Denis,J. Jeremí  as Incicco,Marí  a Victoria Espelt,Sandra V. Verstraeten,Omar P. Pignataro,Eduardo R. Lazarowski,Pablo J. Schwarzbaum
Affiliation:1. IQUIFIB, Department of Biological Chemistry, School of Pharmacy and Biochemistry, University of Buenos Aires, Buenos Aires, Argentina;2. Laboratory of Molecular Endocrinology and Signal Transduction, Institute of Biology and Experimental Medicine-CONICET, Vuelta de Obligado 2490, CP 1428 Buenos Aires, Argentina;3. Department of Biological Chemistry, School of Sciences, University of Buenos Aires, Buenos Aires, Argentina;4. Cystic Fibrosis/Pulmonary Research and Treatment Center, University of North Carolina at Chapel Hill, 4029A Thurston Bowles Building, Chapel Hill, NC 27599-7248, USA
Abstract:

Background

The peptide mastoparan 7 (MST7) stimulated ATP release in human erythrocytes. We explored intra- and extracellular processes governing the time-dependent accumulation of extracellular ATP (i.e., ATPe kinetics).

Methods

Human erythrocytes were treated with MST7 in the presence or absence of two blockers of pannexin 1. ATPe concentration was monitored by luciferin–luciferase based real-time luminometry.

Results

Exposure of human erythrocytes to MST7 led to an acute increase in [ATPe], followed by a slower increase phase. ATPe kinetics reflected a strong activation of ATP efflux and a low rate of ATPe hydrolysis by ectoATPase activity. Enhancement of [ATPe] by MST7 required adhesion of erythrocytes to poly-D-lysin-coated coverslips, and correlated with a 31% increase of cAMP and 10% cell swelling. However, when MST7 was dissolved in a hyperosmotic medium to block cell swelling, ATPe accumulation was inhibited by 49%.Erythrocytes pre-exposure to 10 μM of either carbenoxolone or probenecid, two blockers of pannexin 1, exhibited a partial reduction of ATP efflux.Erythrocytes from pannexin 1 knockout mice exhibited similar ATPe kinetics as those of wild type mice erythrocytes exposed to pannexin 1 blockers.

Conclusions

MST7 induced release of ATP required either cell adhesion or strong activation of cAMP synthesis. Part of this release required cell swelling. Kinetic analysis and a data driven model suggested that ATP efflux is mediated by two ATP conduits displaying different kinetics, with one conduit being fully blocked by pannexin 1 blockers.

General significance

Kinetic analysis of extracellular ATP accumulation from human erythrocytes and potential effects on microcirculation.
Keywords:ATPe, extracellular ATP   ATPi, intracellular ATP   CBX, carbenoxolone   CTZ, cilostazol   GEFs, guanine exchange factors   JR, flux of ATP release   JV, flux of ATPe hydrolysis   MST, mastoparan   PBC, probenecid   pnx, pannexin 1   pnx+/+, pannexin 1 wild type mice   pnx+/&minus  , pannexin 1 heterozygous mice   pnx&minus  /&minus  , pannexin 1 knockout mice, PTX, pertussis toxin   rbcs, red blood cells   Vr, relative cell volume   3V, a cAMP activating cocktail containing isoproterenol, forskolin and papaverine
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