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Updated: Aug 7, 2026

Monitoring Dynamic Changes In Mitochondrial Calcium Levels During Apoptosis Using A Genetically Encoded Calcium Sensor
Published on: April 1, 2011
The modulation of inter-organelle cross-talk to control apoptosis
Morgane Le Bras1, Isabelle Rouy, Catherine Brenner
1CNRS FRE 2445, Université de Versailles/St Quentin, 45, avenue des Etats-Unis, 78035 Versailles, France.
Abstract:
Mitochondria fulfill a wide array of functions dedicated to the energetic metabolism as well as the control of cell death. These functions imply that mitochondria can be activated by a variety of signals and can integrate them to trigger a process called mitochondrial membrane permeabilization (MMP), which induces the ultimate events of apoptosis. MMP consists in a sudden increase in the permeability of mitochondrial membrane that results in the release of critical proapoptotic intermembrane space effectors into the cytosol such as cytochrome c, apoptosis-inducing factor (AIF), Smac/Diablo, Endo G, and pro-caspases. In many models of apoptosis, mitochondrial translocation of proteins and/or lipids concomitantly with alterations of the intracellular milieu has been shown to activate MMP. This applies to tumor suppressors of the Bax/Bcl-2 family (Bax, Bad, Bid, Bim), several protein kinases (Akt, ASK1, hexokinase), p53, NF-kappaB, and nuclear orphan receptors such as TR3/Nur77. After mitochondrial membrane association, these proteins target constitutive mitochondrial proteins including the permeability transition pore complex (PTPC), Bcl-X(L), HSP70, and/or the lipid interphase. Subsequently, they switch their vital function into a lethal function to promote membrane permeabilization and protein release. In this review, we will describe some general rules of inter-organelle cross-talk activating MMP and will review selected examples of pro-apoptotic protein translocation. Finally, we will propose new pharmacological strategies to modulate this process in a therapeutic perspective.
Insights
Mitochondria control cell death by triggering mitochondrial membrane permeabilization (MMP), releasing pro-apoptotic factors. This review explores signals activating MMP and therapeutic strategies targeting this cell death pathway.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Mitochondria are central to cellular energy metabolism and apoptosis.
- Mitochondrial membrane permeabilization (MMP) is a critical step in apoptosis, leading to the release of pro-apoptotic factors.
- Various cellular signals can activate MMP.
Purpose of the Study:
- To review the general rules of inter-organelle cross-talk that activate MMP.
- To examine selected examples of pro-apoptotic protein translocation.
- To propose pharmacological strategies for modulating MMP in therapy.
Main Methods:
- Literature review of studies on mitochondrial function, apoptosis, and protein translocation.
- Analysis of signaling pathways and molecular interactions involved in MMP.
- Discussion of potential therapeutic targets and strategies.
Main Results:
- MMP is triggered by diverse signals integrating at the mitochondria.
- Pro-apoptotic proteins translocate to mitochondria, targeting key components to induce permeabilization.
- Examples include tumor suppressors, kinases, p53, and nuclear receptors.
Conclusions:
- Understanding MMP activation mechanisms is crucial for controlling apoptosis.
- Targeting protein translocation and mitochondrial interactions offers therapeutic potential.
- Pharmacological modulation of MMP could be a novel strategy for diseases involving aberrant cell death.
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