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.

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.