Reactive oxygen species in mitochondria-mediated cell death

被引:369
作者
Orrenius, Sten [1 ]
机构
[1] Karolinska Inst, Inst Environm Med, SE-17177 Stockholm, Sweden
关键词
apoptosis; mitochondria; cytochrome c; cardiolipin; caspases; reactive oxygen species; mitochondrial antioxidants;
D O I
10.1080/03602530701468516
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
In addition to the well-established role of the mitochondria in energy metabolism, regulation of cell death has recently emerged as a second major function of these organelles. This, in turn, seems to be intimately linked to their role as the major intracellular source of reactive oxygen species (ROS) which are mainly, generated at Complex I and III of the respiratory chain. Excessive ROS production can lead to oxidation of macromolecules and has been implicated in mtDNA mutations, ageing, and cell death. Although mitochondrial dysfunction can cause ATP depletion and necrosis, these organelles are also involved in the regulation of apoptotic cell death by mechanisms, which have been conserved through evolution. Thus, many lethal agents target the mitochondria and cause release of cytochrome c and other pro-apoptotic proteins, which can trigger caspase activation and apoptosis. Taken together, these findings have placed the mitochondria in the focus of current cell death research.
引用
收藏
页码:443 / 455
页数:13
相关论文
共 51 条
[31]   Release of cytochrome c and decrease of cytochrome c oxidase in Bax-expressing yeast cells, and prevention of these effects by coexpression of Bcl-x(L) [J].
Manon, S ;
Chaudhuri, B ;
Guerin, M .
FEBS LETTERS, 1997, 415 (01) :29-32
[32]   Mitochondrial disease in superoxide dismutase 2 mutant mice [J].
Melov, S ;
Coskun, P ;
Patel, M ;
Tuinstra, R ;
Cottrell, B ;
Jun, AS ;
Zastawny, TH ;
Dizdaroglu, M ;
Goodman, SI ;
Huang, TT ;
Miziorko, H ;
Epstein, CJ ;
Wallace, DC .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (03) :846-851
[33]   Complex III releases superoxide to both sides of the inner mitochondrial membrane [J].
Muller, FL ;
Liu, YH ;
Van Remmen, H .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (47) :49064-49073
[34]   Cyclophilin D-dependent mitochondrial permeability transition regulates some necrotic but not apoptotic cell death [J].
Nakagawa, T ;
Shimizu, S ;
Watanabe, T ;
Yamaguchi, O ;
Otsu, K ;
Yamagata, H ;
Inohara, H ;
Kubo, T ;
Tsujimoto, Y .
NATURE, 2005, 434 (7033) :652-658
[35]   Mitochondrial phospholipid hydroperoxide glutathione peroxidase inhibits the release of cytochrome c from mitochondria by suppressing the peroxidation of cardiolipin in hypoglycaemia-induced apoptosis [J].
Nomura, K ;
Imai, H ;
Koumura, T ;
Kobayashi, T ;
Nakagawa, Y .
BIOCHEMICAL JOURNAL, 2000, 351 (01) :183-193
[36]   The absence of mitochondrial thioredoxin 2 causes massive apoptosis, exencephaly, and early embryonic lethality in homozygous mice [J].
Nonn, L ;
Williams, RR ;
Erickson, RP ;
Powis, G .
MOLECULAR AND CELLULAR BIOLOGY, 2003, 23 (03) :916-922
[37]   Subcellular distribution of superoxide dismutases (SOD) in rat liver - Cu,Zn-SOD in mitochondria [J].
Okado-Matsumoto, A ;
Fridovich, I .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (42) :38388-38393
[38]   Mitochondrial oxidative stress: Implications for cell death [J].
Orrenius, Sten ;
Gogvadze, Vladimir ;
Zhivotovsky, Boris .
ANNUAL REVIEW OF PHARMACOLOGY AND TOXICOLOGY, 2007, 47 :143-183
[39]   Cytochrome c release from mitochondria proceeds by a two-step process [J].
Ott, M ;
Robertson, JD ;
Gogvadze, V ;
Zhivotovsky, B ;
Orrenius, S .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (03) :1259-1263
[40]   The effect of reactive oxygen species generated from the mitochondrial electron transport chain on the cytochrome c oxidase activity and on the cardiolipin content in bovine heart submitochondrial particles [J].
Paradies, G ;
Petrosillo, G ;
Pistolese, M ;
Ruggiero, FM .
FEBS LETTERS, 2000, 466 (2-3) :323-326