4.5 Article

Regulation of extracellular ATP of human erythrocytes treated with α-hemolysin. Effects of cell volume, morphology, rheology and hemolysis

期刊

出版社

ELSEVIER
DOI: 10.1016/j.bbamcr.2019.01.018

关键词

hemolysin; ATP-transport; Hemolysis; Adhesion, aggregation; E.coli

资金

  1. Consejo Nacional de Investigaciones Cientificas y Tecnicas [PIP 112 20110100639, PDTS/CIN 2014 193]
  2. Universidad de Buenos Aires [200201701001 52BA]
  3. Agencia Nacional de Promocion Cientifica y Tecnica [PICT 2014-0327, PICT 2016-1041, ECOS Sud A15S01]
  4. Laboratory of Excellence GR-Ex [ANR-11-LABX-0051]

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Alpha-hemolysin (HIyA) of uropathogenic strains of Escherichia coli irreversibly binds to human erythrocytes (RBCs) and triggers activation of ATP release and metabolic changes ultimately leading to hemolysis. We studied the regulation of extracellular ATP (ATPe) of RBCs exposed to HlyA. Luminometry was used to assess ATP release and ATPe hydrolysis, whereas changes in cell volume and morphology were determined by electrical impedance, ektacytometry and aggregometry. Exposure of RBCs to HIyA induced a strong increase of [ATPe] (3-36-fold) and hemolysis (1-44-fold), partially compensated by [ATPe] hydrolysis by ectoATPases and intracellular ATPases released by dead cells. Carbenoxolone, a pannexin 1 inhibitor, partially inhibited ATP release (43-67%). The un-acylated toxin ProHlyA and the deletion analog HlyA Delta 914-936 were unable to induce ATP release or hemolysis. For HlyA treated RBCs, a data driven mathematical model showed that simultaneous lytic and non-lytic release mainly governed ATPe kinetics, while ATPe hydrolysis became important after prolonged toxin exposure. HlyA induced a 1.5-fold swelling, while blocking this swelling reduced ATP release by 77%. Blocking ATPe activation of purinergic P2X receptors reduced swelling by 60-80%. HlyA-RBCs showed an acute 1.3-2.2-fold increase of Ca(2+)i, increased crenation and externalization of phosphatidylserine. Perfusion of HlyA-RBCs through adhesion platforms showed strong adhesion to activated HMEC cells, followed by rapid detachment. HIyA exposed RBCs exhibited increased sphericity under osmotic stress, reduced elongation under shear stress, and very low aggregation in viscous media. Overall results showed that HIyA-RBCs displayed activated ATP release, high but weak adhesivity, low deformability and aggregability and high sphericity.

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