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Lonidamine triggers apoptosis via a direct, Bcl-2-inhibited effect on the mitochondrial permeability transition pore
L Ravagnan1, I Marzo, P Costantini
1Centre National de la Recherche Scientifique, Unité Propre de Recherche 420, Villejuif, France.
Abstract:
The molecular mode of action of lonidamine, a therapeutic agent employed in cancer chemotherapy, has been elusive. Here we provide evidence that lonidamine (LND) acts on mitochondria to induce apoptosis. LND provokes a disruption of the mitochondrial transmembrane potential which precedes signs of nuclear apoptosis and cytolysis. The mitochondrial and cytocidal effects of LND are not prevented by inhibitors of caspases or of mRNA or protein synthesis. However, they are prevented by transfection-enforced overexpression of Bcl-2, an oncoprotein which inhibits apoptosis by stabilizing the mitochondrial membrane barrier function. Accordingly, the cell death-inducing effect of LND is amplified by simultaneous addition of PK11195, an isoquinoline ligand of the peripheral benzodiazepine receptor which antagonizes the cytoprotective effect of Bcl-2. When added to isolated nuclei, LND fails to provoke DNA degradation unless mitochondria are added simultaneously. In isolated mitochondria, LND causes the dissipation of the mitochondrial inner transmembrane potential and the release of apoptogenic factors capable of inducing nuclear apoptosis in vitro. Thus the mitochondrion is the subcellular target of LND. All effects of LND on isolated mitochondria are counteracted by cyclosporin A, an inhibitor of the mitochondrial PT pore. We therefore tested the effect of LND on the purified PT pore reconstituted into liposomes. LND permeabilizes liposomal membranes containing the PT pore. This effect is prevented by addition of recombinant Bcl-2 protein but not by a mutant Bcl-2 protein that has lost its apoptosis-inhibitory function. Altogether these data indicate that LND represents a novel type of anti-cancer agent which induces apoptosis via a direct effect on the mitochondrial PT pore.
Insights
Lonidamine (LND) triggers cancer cell death by directly targeting mitochondria. This novel anti-cancer agent disrupts the mitochondrial permeability transition pore, leading to apoptosis and offering a new therapeutic strategy.
Area of Science:
- Biochemistry
- Molecular Biology
- Cell Biology
Background:
- The molecular mechanism of lonidamine (LND), a cancer chemotherapy drug, remains unclear.
- Understanding LND's action is crucial for developing effective cancer treatments.
Purpose of the Study:
- To elucidate the molecular mode of action of lonidamine (LND).
- To identify the subcellular target of LND responsible for its anti-cancer effects.
Main Methods:
- Investigated LND's effects on mitochondrial transmembrane potential and apoptosis markers.
- Utilized Bcl-2 overexpression and PK11195 to assess LND's mechanism.
- Examined LND's impact on isolated nuclei and mitochondria.
- Tested LND's effect on purified mitochondrial PT pore reconstituted into liposomes.
Main Results:
- LND disrupts mitochondrial transmembrane potential, preceding nuclear apoptosis and cytolysis.
- Bcl-2 overexpression prevents LND's mitochondrial and cytocidal effects.
- LND induces the release of apoptogenic factors from isolated mitochondria.
- LND directly permeabilizes liposomal membranes containing the mitochondrial PT pore, an effect inhibited by Bcl-2.
Conclusions:
- Mitochondria are the primary subcellular target of lonidamine (LND).
- LND induces apoptosis through direct interaction with the mitochondrial PT pore.
- LND represents a novel class of anti-cancer agents targeting the mitochondrial PT pore.