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Attenuation of apoptotic DNA fragmentation by amiloride
J M Cobo1, R Garcia-Cañero, J G Valdez
1Department of Nutricion y Bromatologia, Universidad de Alcalá de Henares, Madrid, Spain.
Abstract:
Amiloride is a K+-sparing diuretic that effectively inhibits the Na+/H+ transporter in the plasma membrane of most mammalian cells. We have examined the effects of amiloride on the progression of apoptosis in HL-60 cells induced by camptothecin (CAM), cycloheximide (CHX), and 20 Gy gamma irradiation. Spectrofluorometric measurements on cell populations showed an inhibition of Na+/H+ transporter activity and a corresponding decrease in intracellular pH following treatment with amiloride alone, or in combination with the apoptosis-inducing agents. Flow cytometric cell cycle analysis, in combination with DNA strand break analysis, indicated that amiloride diminished endonuclease-mediated degradation of nuclear chromatin 3 h following treatment with CAM or CHX, and prevented degradation for 3 h following gamma radiation treatment. Apoptosis-associated DNA degradation was significantly greater for all three agents in the absence of amiloride. Protection from radiation-induced apoptosis was transient, since apoptotic subpopulations were observed, but still at a decreased level, 5 h following irradiation. Amiloride was as effective as zinc, an inhibitor of Ca2+/Mg2+-dependent endonucleases, in reducing or delaying the onset of endonuclease activity. Data presented show that effects of amiloride on membrane Na+/H+ transporter activity and intracellular pH can potentially affect apoptotic signaling cascades, leading to a retardation in the rate of progression to an apoptotic cell death. Results also point to the involvement of intracellular pH and Ca2+ in the regulation of apoptotic endonuclease activity, and the need for a functional Na+/H+ exchanger for the induction of apoptosis.
Insights
Amiloride, a diuretic, inhibits the sodium-hydrogen exchanger (Na+/H+), slowing programmed cell death (apoptosis) by reducing DNA degradation. This suggests intracellular pH influences apoptosis progression.
Area of Science:
- Cell Biology
- Biochemistry
- Pharmacology
Background:
- Amiloride is a potassium-sparing diuretic known to inhibit the plasma membrane Na+/H+ transporter.
- Apoptosis, or programmed cell death, is a tightly regulated process involving specific signaling cascades.
- The role of Na+/H+ exchange and intracellular pH in modulating apoptosis remains an area of investigation.
Purpose of the Study:
- To investigate the effects of amiloride on apoptosis progression in HL-60 cells.
- To determine if amiloride's inhibition of Na+/H+ transport influences apoptosis induced by various agents.
- To explore the involvement of intracellular pH and Ca2+ in regulating apoptotic endonuclease activity.
Main Methods:
- HL-60 cells were treated with apoptosis-inducing agents (camptothecin, cycloheximide, gamma irradiation) with or without amiloride.
- Spectrofluorometry was used to measure Na+/H+ transporter activity and intracellular pH.
- Flow cytometry and DNA strand break analysis assessed apoptosis progression and chromatin degradation.
Main Results:
- Amiloride treatment inhibited Na+/H+ transporter activity and decreased intracellular pH.
- Amiloride diminished endonuclease-mediated DNA degradation in cells treated with camptothecin, cycloheximide, or gamma irradiation.
- Protection from apoptosis was observed, with amiloride showing comparable effects to zinc, a known endonuclease inhibitor.
Conclusions:
- Amiloride's effects on Na+/H+ transport and intracellular pH can retard the progression of apoptosis.
- Intracellular pH and Ca2+ are implicated in regulating apoptotic endonuclease activity.
- A functional Na+/H+ exchanger appears necessary for the induction of apoptosis.