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Reduced Ca2+ entry and suicidal death of erythrocytes in PDK1 hypomorphic mice
Michael Föller1, Hasan Mahmud, Saisudha Koka
1Department of Physiology, University of Tuebingen, Gmelinstr. 5, 72076 Tübingen, Germany.
Abstract:
The phosphoinositide-dependent kinase PDK1 is a key element in the phosphoinositol-3-kinase signalling pathway, which is involved in the regulation of ion channels, transporters, cell volume and cell survival. Eryptosis, the suicidal death of erythrocytes, is characterized by decrease in cell volume, cell membrane blebbing and phospholipids scrambling with phosphatidylserine exposure at the cell surface. Oxidative stress, osmotic shock or Cl- removal trigger eryptosis by activation of Ca2+-permeable cation channels and subsequent increase in cytosolic Ca2+ activity. To explore the impact of PDK1 for erythrocyte survival, eryptosis was analysed in hypomorphic mice (pdk1hm) expressing only some 25% of PDK1 and in their wild-type littermates (pdk1wt). Cell volume was estimated from forward scatter and phosphatidylserine exposure from annexin-V binding in fluorescence activated cell sorter analysis. Forward scatter was smaller in pdk1hm than in pdk1wt erythrocytes. Oxidative stress (100 microM tert-butylhydroperoxide), osmotic shock (+300 mM sucrose) and Cl- removal (replacement of Cl- with gluconate) all decreased forward scatter and increased the percentage of annexin-V-binding erythrocytes from both pdk1hm and pdk1wt mice. After treatment, the forward scatter was similar in both genotypes, but the percentage of annexin-V binding was significantly smaller in pdk1hm than in pdk1wt erythrocytes. According to Fluo-3 fluorescence, cytosolic Ca2+ activity was significantly smaller in pdk1hm than in pdk1wt erythrocytes. Treatment with Ca2+-ionophore ionomycin (1 microM) was followed by an increase in annexin-V binding to similar levels in pdk1hm and pdk1wt erythrocytes. The experiments reveal that PDK1 deficiency is associated with decreased Ca2+ entry into erythrocytes and thus with blunted eryptotic effects of oxidative stress, osmotic shock and Cl- removal.
Insights
Phosphoinositide-dependent kinase 1 (PDK1) deficiency reduces calcium entry into red blood cells, thereby blunting eryptosis (programmed red blood cell death) triggered by oxidative stress and osmotic shock.
Area of Science:
- Cell Biology
- Biochemistry
- Physiology
Background:
- Phosphoinositide-dependent kinase 1 (PDK1) is crucial for the phosphoinositol-3-kinase (PI3K) signaling pathway, regulating cell survival and ion transport.
- Eryptosis, or programmed red blood cell death, involves cell shrinkage, membrane blebbing, and phosphatidylserine exposure, often triggered by oxidative stress or ion imbalance.
- Calcium (Ca2+) influx is a key event initiating eryptosis.
Purpose of the Study:
- To investigate the role of PDK1 in erythrocyte survival and its influence on eryptosis.
- To analyze eryptosis in red blood cells from hypomorphic PDK1 mice (pdk1hm) compared to wild-type littermates (pdk1wt).
Main Methods:
- Flow cytometry was used to assess erythrocyte volume (forward scatter) and phosphatidylserine exposure (annexin-V binding).
- Eryptosis was induced by oxidative stress (tert-butylhydroperoxide), osmotic shock, and chloride (Cl-) removal.
- Intracellular Ca2+ levels were measured using Fluo-3 fluorescence.
- Ca2+ ionophore ionomycin was used to assess the impact of Ca2+ availability on annexin-V binding.
Main Results:
- PDK1-deficient erythrocytes (pdk1hm) exhibited reduced forward scatter and significantly lower annexin-V binding compared to wild-type (pdk1wt) erythrocytes after eryptotic stimuli.
- Cytosolic Ca2+ activity was significantly lower in pdk1hm erythrocytes.
- Treatment with ionomycin normalized annexin-V binding in both genotypes, indicating Ca2+ influx is the limiting factor in pdk1hm cells.
- PDK1 deficiency attenuated the eryptotic response to oxidative stress, osmotic shock, and Cl- removal.
Conclusions:
- PDK1 deficiency impairs Ca2+ entry into erythrocytes.
- Reduced Ca2+ influx due to PDK1 deficiency protects erythrocytes from eryptosis induced by various stressors.
- PDK1 plays a significant role in regulating erythrocyte survival by modulating Ca2+ homeostasis.
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