Organelle-specific initiation of cell death pathways

被引:0
作者
Karine F. Ferri
Guido Kroemer
机构
[1] Centre National de la Recherche Scientifique,
[2] UMR 1599,undefined
[3] Institut Gustave Roussy,undefined
[4] Pavillon de Recherche 1,undefined
来源
Nature Cell Biology | 2001年 / 3卷
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摘要
Nuclear DNA damage and ligation of plasma-membrane death receptors have long been recognized as initial triggers of apoptosis that induce mitochondrial membrane permeabilization (MMP) and/or the direct activation of caspases. Accumulating evidence suggests that other organelles, including the endoplasmic reticulum (ER), lysosomes and the Golgi apparatus, are also major points of integration of pro-apoptotic signalling or damage sensing. Each organelle possesses sensors that detect specific alterations, locally activates signal transduction pathways and emits signals that ensure inter-organellar cross-talk. The ER senses local stress through chaperones, Ca2+-binding proteins and Ca2+ release channels, which might transmit ER Ca2+ responses to mitochondria. The ER also contains several Bcl-2-binding proteins, and Bcl-2 has been reported to exert part of its cytoprotective effect within the ER. Upon membrane destabilization, lysosomes release cathepsins that are endowed with the capacity of triggering MMP. The Golgi apparatus constitutes a privileged site for the generation of the pro-apoptotic mediator ganglioside GD3, facilitates local caspase-2 activation and might serve as a storage organelle for latent death receptors. Intriguingly, most organelle-specific death responses finally lead to either MMP or caspase activation, both of which might function as central integrators of the death pathway, thereby streamlining lysosome-, Golgi- or ER-elicited responses into a common pathway.
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页码:E255 / E263
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共 205 条
[1]  
Kerr JFR(1972)Apoptosis: a basic biological phenomenon with wide-ranging implications in tissue kinetics Br. J. Cancer 26 239-257
[2]  
Wyllie AH(1999)Caspase structure, proteolytic substrates, and function during apoptotic cell death Cell Death Differ. 6 1028-1042
[3]  
Currie AR(2000)Mitochondrial control of cell death Nature Med. 6 513-519
[4]  
Nicholson DW(2001)The autophagosomal-lysosomal compartment in programmed cell death Cell Death Differ. 8 569-581
[5]  
Kroemer G(1998)The central executioner of apoptosis: mitochondria or caspases? Trends Cell Biol. 8 267-271
[6]  
Reed JC(2001)The mitochondrion: Is it central to apoptosis? Science 292 624-626
[7]  
Bursch W(1999)Caspase-3-dependent cleavage of Bcl-2 promotes release of cytochrome c J. Biol. Chem. 274 21155-21161
[8]  
Green DR(2001)Caspase cleavage enhances the apoptosis-inducing effects of BAD Mol. Cell. Biol. 21 3025-3036
[9]  
Kroemer G(2000)Pro-apoptotic cascade activates BID, which oligomerizes BAK or BAX into pores that result in the release of cytochrome c Cell Death Differ. 7 1166-1173
[10]  
Finkel E(2000)Two distinct pathways leading to nuclear apoptosis J. Exp. Med. 192 571-579