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Published on: December 26, 2014
Effects of recombinant human granulocyte-macrophage colony-stimulating factor on intracellular pH in mature
R Sullivan1, J D Griffin, J Wright
1Department of Medicine, Boston City Hospital, MA.
Abstract:
We studied the effects of recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSFrh) on the internal pH of granulocytes using the fluorescent probe BCECF. GM-CSFrh did not directly alter the resting pH of granulocytes isolated from the peripheral blood; however, when the cells were preincubated for 90 minutes with the growth factor and then activated with the chemotactic peptide N-formyl met leu phe (fMLP), they exhibited both an acceleration in the initial rate of acidification and a marked delay in realkalinization. The kinetic changes both in initial acidification and in subsequent realkalinization induced by GM-CSFrh priming were not prevented by protein synthesis inhibitors and were observed in granulocytes harvested from patients with both sex-linked and autosomal recessive chronic granulomatous disease (CGD). By directly quantitating H+ ion secretion, by monitoring the effects of sodium repletion on intracellular pH, and through use of the sodium channel inhibitors amiloride and dimethyl amiloride and the Na+/K+-ATPase inhibitor ouabain, we showed that the altered kinetics of intracellular acidification and alkalinization following fMLP stimulation of GM-CSFrh-primed granulocytes could not be accounted for by changes in transmembrane proton exportation regulated by the Na+/H+ antiport channel. Although the initial acidification following fMLP was abrogated by 2-deoxy-D-glucose in both GM-CSFrh-pretreated and GM-CSFrh-untreated granulocytes, retardation of the subsequent phase of alkalinization was observed in GM-CSFrh-primed cells even after inhibition of both glycolytic and mitochondrial metabolism. Our data indicate that the increased cytosolic acidification following fMLP stimulation in granulocytes "primed" with GM-CSFrh does not result from disordered proton excretion but instead from increased release of intracellular free acid which is only partially coupled to glucose catabolism or to the generation of superoxide anion (O2-).
Insights
Recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSFrh) primes granulocytes, accelerating acidification and delaying realkalinization upon fMLP activation. This effect stems from increased intracellular acid release, not altered proton excretion.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Granulocyte function is critical for innate immunity and inflammation.
- Intracellular pH (pHi) plays a key role in regulating granulocyte activation and function.
- Granulocyte-macrophage colony-stimulating factor (GM-CSFrh) is a key regulator of granulocyte development and function.
Purpose of the Study:
- To investigate the effects of GM-CSFrh priming on the intracellular pH dynamics of granulocytes.
- To elucidate the mechanisms underlying GM-CSFrh-induced alterations in granulocyte acidification and realkalinization kinetics.
- To determine the role of proton transport mechanisms in GM-CSFrh-mediated pHi changes.
Main Methods:
- Measurement of intracellular pH in isolated human granulocytes using the fluorescent probe BCECF.
- Stimulation of granulocytes with N-formyl-methionyl-leucyl-phenylalanine (fMLP) after GM-CSFrh preincubation.
- Assessment of proton transport using ion channel inhibitors (amiloride, ouabain) and metabolic inhibitors (2-deoxy-D-glucose).
Main Results:
- GM-CSFrh priming accelerated initial granulocyte acidification and delayed realkalinization upon fMLP stimulation.
- These kinetic changes were independent of protein synthesis and observed in chronic granulomatous disease (CGD) neutrophils.
- Altered kinetics were not due to changes in Na+/H+ antiport or Na+/K+-ATPase activity.
- Acidification was abrogated by 2-deoxy-D-glucose, but delayed realkalinization persisted even after metabolic inhibition.
Conclusions:
- GM-CSFrh priming enhances fMLP-induced cytosolic acidification in granulocytes.
- This effect is primarily mediated by increased release of intracellular free acid, not altered proton excretion.
- The observed pHi changes are only partially coupled to glucose metabolism or superoxide generation.
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