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Subcellular and submitochondrial mode of action of Bcl-2-like oncoproteins
N Zamzami1, C Brenner, I Marzo
1Centre National de la Recherche Scientifique, UPR420, Villejuif, France.
Abstract:
Bcl-2 is the prototype of a class of oncogenes which regulates apoptosis. Bcl-2-related gene products with either death-promoting and death-inhibitory activity are critically involved in numerous disease states and thus constitute prime targets for therapeutic interventions. The relative amount of death agonists and antagonists from the Bcl-2 family constitutes a regulatory rheostat whose function is determined, at least in part, by selective protein-protein interactions. Bcl-2 and its homologs insert into intracellular membranes including mitochondria, the endoplasmatic reticulum and the nuclear envelope. Many of the molecular genetic, ultrastructural, crystallographic and functional studies suggest that Bcl-2-related molecules exert their apoptosis-regulatory effects via regulating mitochondrial alterations preceding the activation of apoptogenic proteases and nucleases. Via a direct effect on mitochondrial membranes, Bcl-2 prevents all hallmarks of the early stage of apoptosis including disruption of the inner mitochondrial transmembrane potential and the release of apoptogenic protease activators from mitochondria. The mitochondrial permeability transition (PT) pore, also called mitochondrial megachannel or multiple conductance channel, is a multiprotein complex formed at the contact site between the mitochondrial inner and outer membranes, exactly at the same localization at which Bax, Bcl-2, and Bcl-XL are particularly abundant. The PT pore participates in the regulation of matrix Ca2+, pH, deltapsim, and volume and functions as a Ca2+-, voltage-, pH-, and redox-gated channel with several levels of conductance and little if any ion selectivity. Experiments involving the purified PT pore complex indicate that Bax, Bcl-2, and Bcl-XL exert at least part of their apoptosis-regulatory function by facilitating (Bax) or inhibiting (Bcl-2, Bcl-XL) PT pore opening. These findings clarify the principal (but not exclusive) mechanism of Bcl-2-mediated cytoprotection.
Insights
Bcl-2 proteins regulate cell death by controlling the mitochondrial permeability transition (PT) pore. This mechanism clarifies how Bcl-2 inhibits apoptosis and protects cells.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Bcl-2 family proteins are key regulators of apoptosis, a process implicated in various diseases.
- These proteins modulate cell death through interactions and by targeting intracellular membranes, particularly mitochondria.
Purpose of the Study:
- To elucidate the mechanism by which Bcl-2 family proteins regulate apoptosis.
- To investigate the role of the mitochondrial permeability transition (PT) pore in Bcl-2-mediated cytoprotection.
Main Methods:
- Analysis of molecular genetic, ultrastructural, crystallographic, and functional data.
- Experiments with purified PT pore complex to assess the function of Bax, Bcl-2, and Bcl-XL.
Main Results:
- Bcl-2 and its homologs localize to intracellular membranes, including mitochondria.
- Bcl-2 family members regulate the opening of the PT pore, a multiprotein complex in the mitochondrial membranes.
- Bax facilitates PT pore opening, while Bcl-2 and Bcl-XL inhibit it, impacting apoptosis.
Conclusions:
- Bcl-2 family proteins exert apoptosis-regulatory effects by modulating mitochondrial alterations.
- The regulation of the PT pore by Bcl-2 proteins is a principal mechanism of Bcl-2-mediated cytoprotection.