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Plasma membrane depolarization without repolarization is an early molecular event in anti-Fas-induced apoptosis
C D Bortner1, M Gomez-Angelats, J A Cidlowski
1Laboratory of Signal Transduction, NIEHS, National Institutes of Health, Research Triangle Park, North Carolina 27709, USA.
Abstract:
The movement of intracellular monovalent cations has previously been shown to play a critical role in events leading to the characteristics associated with apoptosis. A loss of intracellular potassium and sodium occurs during apoptotic cell shrinkage establishing an intracellular environment favorable for nuclease activity and caspase activation. We have now investigated the potential movement of monovalent ions in Jurkat cells that occur prior to cell shrinkage following the induction of apoptosis. A rapid increase in intracellular sodium occurs early after apoptotic stimuli suggesting that the normal negative plasma membrane potential may change during cell death. We report here that diverse apoptotic stimuli caused a rapid cellular depolarization of Jurkat T-cells that occurs prior to and after cell shrinkage. In addition to the early increase in intracellular Na(+), (86)Rb(+) studies reveal a rapid inhibition of K(+) uptake in response to anti-Fas. These effects on Na(+) and K(+) ions were accounted for by the inactivation of the Na(+)/K(+)-ATPase protein and its activity. Furthermore, ouabain, a cardiac glycoside inhibitor of the Na(+)/K(+)-ATPase, potentiated anti-Fas-induced apoptosis. Finally, activation of an anti-apoptotic signal, i.e. protein kinase C, prevented both cellular depolarization in response to anti-Fas and all downstream characteristics associated with apoptosis. Thus cellular depolarization is an important early event in anti-Fas-induced apoptosis, and the inability of cells to repolarize via inhibition of the Na(+)/K(+)-ATPase is a likely regulatory component of the death process.
Insights
Cellular depolarization and increased intracellular sodium are early events in apoptosis. Inhibition of the sodium-potassium pump (Na+/K+-ATPase) prevents repolarization, promoting programmed cell death.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Monovalent cation movement is crucial for apoptosis.
- Loss of intracellular potassium and sodium during cell shrinkage favors nuclease activity and caspase activation.
Purpose of the Study:
- Investigate monovalent ion movement in Jurkat cells before apoptotic cell shrinkage.
- Determine the role of cellular depolarization and Na+/K+-ATPase in apoptosis induction.
Main Methods:
- Induction of apoptosis in Jurkat T-cells using diverse stimuli (e.g., anti-Fas).
- Measurement of intracellular sodium and potassium ion flux using techniques like (86)Rb+ uptake.
- Assessment of Na+/K+-ATPase activity and protein levels.
- Pharmacological manipulation using ouabain and activation of protein kinase C.
Main Results:
- Apoptotic stimuli caused rapid cellular depolarization preceding cell shrinkage.
- Early increase in intracellular sodium and inhibition of potassium uptake were observed.
- Na+/K+-ATPase inactivation correlated with these ionic changes.
- Ouabain potentiated apoptosis, while protein kinase C activation inhibited depolarization and apoptosis.
Conclusions:
- Cellular depolarization is an early, critical event in anti-Fas-induced apoptosis.
- Inhibition of Na+/K+-ATPase and the inability to repolarize are key regulatory components of this cell death pathway.