A Bak-dependent mitochondrial amplification step contributes to Smac mimetic/glucocorticoid-induced necroptosis
Katharina Rohde1, Lara Kleinesudeik1,2,3, Stefanie Roesler1
1Institute for Experimental Cancer Research in Pediatrics, Goethe-University, Komturstraße 3a, 60528 Frankfurt, Germany.
Abstract:
Necroptosis is a form of programmed cell death that critically depends on RIP3 and MLKL. However, the contribution of mitochondria to necroptosis is still poorly understood. In the present study, we discovered that mitochondrial perturbations play a critical role in Smac mimetic/Dexamethasone (Dexa)-induced necroptosis independently of death receptor ligands. We demonstrate that the Smac mimetic BV6 and Dexa cooperate to trigger necroptotic cell death in acute lymphoblastic leukemia (ALL) cells that are deficient in caspase activation due to absent caspase-8 expression or pharmacological inhibition by the caspase inhibitor zVAD.fmk, since genetic silencing or pharmacological inhibition of RIP3 or MLKL significantly rescue BV6/Dexa-induced necroptosis. In addition, RIP3 or MLKL knockout mouse embryonic fibroblasts (MEFs) are protected from BV6/Dexa/zVAD.fmk-induced cell death. In contrast, antagonistic antibodies against the death receptor ligands TNFα, TRAIL or CD95 ligand fail to rescue BV6/Dexa-triggered cell death. Kinetic studies revealed that prior to cell death BV6/Dexa treatment causes hyperpolarization of the mitochondrial membrane potential (MMP) followed by loss of MMP, reactive oxygen species (ROS) production, Bak activation and disruption of mitochondrial respiration. Importantly, knockdown of Bak significantly reduces BV6/Dexa-induced loss of MMP and delays cell death, but not ROS production, whereas ROS scavengers attenuate Bak activation, indicating that ROS production occurs upstream of BV6/Dexa-mediated Bak activation. Consistently, BV6/Dexa treatment causes oxidative thiol modifications of Bak protein. Intriguingly, knockdown or knockout of RIP3 or MLKL protect ALL cells or MEFs from BV6/Dexa-induced ROS production, Bak activation, drop of MMP and disruption of mitochondrial respiration, demonstrating that these mitochondrial events depend on RIP3 and MLKL. Thus, mitochondria might serve as an amplification step in BV6/Dexa-induced necroptosis. These findings provide new insights into the role of mitochondrial dysfunctions during necroptosis and have important implications for the development of novel treatment approaches to overcome apoptosis resistance in ALL.
Insights
Mitochondria play a key role in programmed cell death (necroptosis) triggered by Smac mimetic/Dexamethasone, acting as an amplification step. This discovery offers new therapeutic targets for apoptosis-resistant cancers like acute lymphoblastic leukemia.
Area of Science:
- Cell Death Biology
- Mitochondrial Biology
- Cancer Therapeutics
Background:
- Necroptosis is a critical cell death pathway dependent on RIP3 and MLKL.
- The role of mitochondria in necroptosis remains incompletely understood.
- Apoptosis resistance is a major challenge in treating acute lymphoblastic leukemia (ALL).
Purpose of the Study:
- To investigate the contribution of mitochondria to Smac mimetic/Dexamethasone (Dexa)-induced necroptosis.
- To elucidate the molecular mechanisms linking mitochondrial dysfunction to necroptosis.
- To explore potential therapeutic strategies for ALL by targeting necroptosis.
Main Methods:
- Utilized Smac mimetic (BV6) and Dexamethasone (Dexa) to induce necroptosis in ALL cells and mouse embryonic fibroblasts (MEFs).
- Employed genetic silencing (knockdown/knockout) of RIP3, MLKL, and Bak, alongside pharmacological inhibitors (zVAD.fmk) and ROS scavengers.
- Monitored mitochondrial membrane potential (MMP), reactive oxygen species (ROS) production, Bak activation, and mitochondrial respiration kinetically.
Main Results:
- BV6/Dexa induced necroptosis independently of death receptor ligands in caspase-deficient cells.
- Mitochondrial perturbations, including loss of MMP and ROS production, preceded cell death and were dependent on RIP3 and MLKL.
- ROS production occurred upstream of Bak activation, which was modulated by ROS and essential for full necroptosis.
- Knockdown of Bak partially reduced cell death and MMP loss but not ROS production.
Conclusions:
- Mitochondria act as an amplification hub in Smac mimetic/Dexa-induced necroptosis, mediated by RIP3 and MLKL.
- Mitochondrial dysfunction is a critical component of this necroptosis pathway.
- Targeting mitochondrial pathways in necroptosis may offer novel therapeutic avenues for overcoming apoptosis resistance in ALL.
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