Ryanodine Receptor Mediated Calcium Release Contributes to Ferroptosis Induced in Primary Hippocampal Neurons by GPX4 Inhibition
- Antioxidants (Basel). 2023 Mar 13;12(3):705. doi: 10.3390/antiox12030705.
- 1. Biomedical Neuroscience Institute, Faculty of Medicine, Universidad de Chile, Santiago 8380000, Chile.
- 2. Department of Neurobiology, Interdisciplinary Center for Neurosciences (IZN), Heidelberg University, 69120 Heidelberg, Germany.
- 3. Department of Biology, Faculty of Sciences, Universidad de Chile, Santiago 7810000, Chile.
- 4. Institute for Research in Dental Sciences, Faculty of Dentistry, Universidad de Chile, Santiago 8380000, Chile.
- 5. Department of Neurosciences, Faculty of Medicine, Universidad de Chile, Santiago 8380000, Chile.
- 6. Physiology and Biophysics Program, Institute of Biomedical Sciences and Center for Exercise, Metabolism and Cancer Studies, Faculty of Medicine, Universidad de Chile, Santiago 8380000, Chile.
Ferroptosis, a newly described form of regulated cell death, is characterized by the iron-dependent accumulation of lipid peroxides, glutathione depletion, mitochondrial alterations, and enhanced Lipoxygenase activity. Inhibition of Glutathione Peroxidase 4 (GPX4), a key intracellular antioxidant regulator, promotes Ferroptosis in different cell types. Scant information is available on GPX4-induced Ferroptosis in hippocampal neurons. Moreover, the role of calcium (CA2+) signaling in Ferroptosis remains elusive. Here, we report that RSL3, a selective inhibitor of GPX4, caused dendritic damage, lipid peroxidation, and induced cell death in rat primary hippocampal neurons. Previous incubation with the Ferroptosis inhibitors deferoxamine or ferrostatin-1 reduced these effects. Likewise, preincubation with micromolar concentrations of ryanodine, which prevent CA2+ release mediated by Ryanodine Receptor (RyR) channels, partially protected against RSL3-induced cell death. Incubation with RSL3 for 24 h suppressed the cytoplasmic CA2+ concentration increase induced by the RyR agonist caffeine or by the SERCA inhibitor thapsigargin and reduced hippocampal RyR2 protein content. The present results add to the current understanding of ferroptosis-induced neuronal cell death in the hippocampus and provide new information both on the role of RyR-mediated CA2+ signals on this process and on the effects of GPX4 inhibition on endoplasmic reticulum calcium content.
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Research Areas: Cancer