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Cell death regulation by the Bcl‐2 protein family in the mitochondria

Journal of Cellular Physiology · 2003 · Vol. 195(2) · pp. 158–167
Yoshihide Tsujimoto

Abstract

An increase in the permeability of the outer mitochondrial membrane is central to apoptotic cell death, since it leads to the release of several apoptogenic factors, such as cytochrome c and Smac/Diablo, into the cytoplasm that activate downstream death programs. During apoptosis, the mitochondria also release AIF and endonuclease G, both of which are translocated to the nucleus and are implicated in apoptotic nuclear changes that occur in a caspase-independent manner. Mitochondrial membrane permeability is directly controlled by the major apoptosis regulator, i.e., the Bcl-2 family of proteins, mainly through regulation of the formation of apoptotic protein-conducting pores in the outer mitochondrial membrane, although the precise molecular mechanisms are still not completely understood. Here, I focus on the mechanisms by which Bcl-2 family members control the permeability of mitochondrial membrane during apoptosis.

Cell death mechanisms and regulationRNA Interference and Gene DeliveryMitochondrial Function and PathologyCell biologyMitochondrionMitochondrial apoptosis-induced channelApoptosisBcl-2 familyCytochrome cProgrammed cell deathMitochondrial membrane transport proteinTranslocase of the inner membraneCytoplasm

MeSH terms

AnimalsCell Membrane PermeabilityEukaryotic CellsHumansIntracellular MembranesMitochondriaSignal TransductionApoptosisProtein Structure, TertiaryProto-Oncogene Proteins c-bcl-2Protein Transport
Citations
497
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101
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