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Triggering of Suicidal Erythrocyte Death by the Antibiotic Ionophore Nigericin
Rosi Bissinger1, Abaid Malik1, Ghada Bouguerra1,2
1Department of Physiology, University of Tuebingen, Tuebingen, Germany.
Abstract:
The K(+),H(+) ionophore and antibiotic nigericin has been shown to trigger apoptosis and is thus considered for the treatment of malignancy. Cellular mechanisms involved include induction of oxidative stress, which is known to activate erythrocytic Ca(2+)-permeable unselective cation channels leading to Ca(2+) entry, increase in cytosolic Ca(2+) activity ([Ca(2+)]i) and subsequent stimulation of eryptosis, the suicidal erythrocyte death characterized by cell shrinkage and cell membrane scrambling with phosphatidylserine translocation to the erythrocyte surface. This study explored whether and how nigericin induces eryptosis. Phosphatidylserine exposure at the cell surface was estimated from annexin V binding, cell volume from forward scatter, [Ca(2+)]i from Fluo3 fluorescence, pHi from BCECF fluorescence, ceramide abundance utilizing antibodies and reactive oxygen species (ROS) formation from DCFDA-dependent fluorescence. A 48-hr exposure of human erythrocytes to nigericin significantly increased the percentage of annexin-V-binding cells (0.1-10 nM), significantly decreased forward scatter (0.1-1 nM), significantly decreased cytosolic pH (0.1-1 nM) and significantly increased Fluo3 fluorescence (0.1-10 nM). Nigericin (1 nM) slightly, but significantly, increased ROS, but did not significantly modify ceramide abundance. The effect of nigericin on annexin V binding was significantly blunted, but not abolished by removal of extracellular Ca(2+). The nigericin-induced increase in [Ca(2+)]i and annexin V binding was again significantly blunted but not abolished by the Na(+)/H(+) exchanger inhibitor cariporide (10 μM). Nigericin triggers eryptosis, an effect paralleled by ROS formation, in part dependent on stimulation of Ca(2+) entry, and involving the cariporide-sensitive Na(+)/H(+) exchanger.
Insights
Nigericin antibiotic induces suicidal erythrocyte death (eryptosis) by increasing oxidative stress and calcium entry. This process involves the Na(+)/H(+) exchanger and leads to cell shrinkage and phosphatidylserine exposure.
Area of Science:
- Cell Biology
- Biochemistry
- Physiology
Background:
- Nigericin, a K(+),H(+) ionophore antibiotic, induces apoptosis and is explored for cancer treatment.
- Erythrocyte apoptosis (eryptosis) involves oxidative stress, calcium influx, cell shrinkage, and phosphatidylserine exposure.
Purpose of the Study:
- To investigate whether and how nigericin induces eryptosis in human erythrocytes.
- To elucidate the cellular mechanisms underlying nigericin-induced eryptosis.
Main Methods:
- Assessed phosphatidylserine exposure via annexin V binding.
- Measured cell volume using forward scatter.
- Quantified cytosolic calcium ([Ca(2+)]i) and pH (pHi) using fluorescence indicators.
- Determined reactive oxygen species (ROS) and ceramide levels.
Main Results:
- Nigericin exposure increased annexin V binding and Fluo3 fluorescence (Ca(2+) influx).
- Nigericin decreased cell volume (forward scatter) and cytosolic pH.
- Nigericin slightly increased ROS but did not significantly alter ceramide levels.
- Ca(2+) removal and cariporide (Na(+)/H(+) exchanger inhibitor) partially inhibited nigericin's effects on Ca(2+) influx and annexin V binding.
Conclusions:
- Nigericin triggers eryptosis in human erythrocytes.
- This eryptosis is associated with ROS formation and partially dependent on Ca(2+) entry.
- The Na(+)/H(+) exchanger plays a role in nigericin-induced eryptosis.