Neuroprotection through Stimulation of Mitochondrial Antioxidant Protein Expression

被引:28
作者
Greco, Tiffany [1 ,2 ,3 ]
Fiskum, Gary [1 ,2 ]
机构
[1] Univ Maryland, Sch Med, Dept Anesthesiol, Baltimore, MD 21201 USA
[2] Univ Maryland, Sch Med, Shock Trauma & Anesthesiol Res Ctr, Baltimore, MD 21201 USA
[3] Univ Maryland, Sch Med, Grad Program Life Sci Mol Med Program, Baltimore, MD 21201 USA
关键词
Antioxidant; bioenergetics; calcium; cerebral ischemia; neurodegeneration; Nrf2; oxidative stress; permeability transition pore; OXYGEN SPECIES PRODUCTION; TRANSCRIPTION FACTOR NRF2; FOCAL CEREBRAL-ISCHEMIA; OXIDATIVE STRESS; CELL-DEATH; PERMEABILITY TRANSITION; PHASE-2; ENZYMES; IN-VIVO; NEURONAL DEATH; CYCLOPHILIN-D;
D O I
10.3233/JAD-2010-100519
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Oxidative stress and loss of cellular Ca2+ homeostasis are closely linked and are common denominators in the pathophysiology of many neurodegenerative diseases and acute disorders of the nervous system. Mitochondria are major targets of oxidative stress and abnormal intracellular Ca2+, as both can cause bioenergetic failure through synergistic activation of the mitochondrial inner membrane permeability transition pore. Opening of this molecularly ill-defined pore causes both collapse of the membrane potential, which drives oxidative phosphorylation, and release of small metabolites, including pyridine nucleotides and glutathione, which are necessary for energy metabolism and defense against oxidative stress. Expression of genes coding for many antioxidant defense proteins is regulated by the Nrf2 transcriptional activating factor. Translocation of this protein from the cytosol to the nucleus is stimulated by oxidative stress and by specific agents that either react with cysteine sulfhydryl groups present on the protein KEAP1, that normally binds and restricts Nrf2 translocation, or that stimulate serine phosphorylation of Nrf2. Recent evidence indicates that mitochondria are a target of the cytoprotective gene expression induced by Nrf2 and that this pathway can increase resistance to redox-regulated opening of the permeability transition pore. Pharmacologic stimulation of the Nrf2 system and its protection against mitochondrial bioenergetic dysfunction may therefore constitute a powerful mechanism for both pre-conditioning against neurodegeneration and for post-conditioning against neural cell death associated with acute neurologic injury.
引用
收藏
页码:S427 / S437
页数:11
相关论文
共 110 条
[1]   Immediate and delayed treatments with curcumin prevents forebrain ischemia-induced neuronal damage and oxidative insult in the rat hippocampus [J].
Al-Omar, Fadhel A. ;
Nagi, Mahmoud N. ;
Abdulgadir, Mustafa M. ;
Al Joni, Khalda S. ;
Al-Majed, Abdulhakeem A. .
NEUROCHEMICAL RESEARCH, 2006, 31 (05) :611-618
[2]   Two faces of nitric oxide: implications for cellular mechanisms of oxygen toxicity [J].
Allen, Barry W. ;
Demchenko, Ivan T. ;
Piantadosi, Claude A. .
JOURNAL OF APPLIED PHYSIOLOGY, 2009, 106 (02) :662-667
[3]   Monoamine oxidase-B mediates ecstasy-induced neurotoxic effects to adolescent rat brain mitochondria [J].
Alves, Ema ;
Summavielle, Teresa ;
Alves, Cecilia Juliana ;
Gomes-da-Silva, Joana ;
Barata, Jose Custodio ;
Fernandes, Eduarda ;
Bastos, Maria de Lourdes ;
Tavares, Maria Amelia ;
Carvalho, Felix .
JOURNAL OF NEUROSCIENCE, 2007, 27 (38) :10203-10210
[4]   Mice with a partial deficiency of manganese superoxide dismutase show increased vulnerability to the mitochondrial toxins malonate, 3-nitropropionic acid, and MPTP [J].
Andreassen, OA ;
Ferrante, RJ ;
Dedeoglu, A ;
Albers, DW ;
Klivenyi, P ;
Carlson, EJ ;
Epstein, CJ ;
Beal, MF .
EXPERIMENTAL NEUROLOGY, 2001, 167 (01) :189-195
[5]   Oximetry-guided reoxygenation improves neurological outcome after experimental cardiac arrest [J].
Balan, Irina S. ;
Fiskum, Gary ;
Hazelton, Julie ;
Cotto-Cumba, Cynthia ;
Rosenthal, Robert E. .
STROKE, 2006, 37 (12) :3008-3013
[6]   Agmatine prevents the Ca2+-dependent induction of permeability transition in rat brain mitochondria [J].
Battaglia, V. ;
Grancara, S. ;
Satriano, J. ;
Saccoccio, S. ;
Agostinelli, E. ;
Toninello, A. .
AMINO ACIDS, 2010, 38 (02) :431-437
[7]   Apoptotic interactions of cyctochrome c:: Redox flirting with anionic phospholipids within and outside of mitochondria [J].
Bayir, H. ;
Fadeel, B. ;
Palladino, M. J. ;
Witasp, E. ;
Kurnikov, I. V. ;
Tyurina, Y. Y. ;
Tyurin, V. A. ;
Amoscato, A. A. ;
Jiang, J. ;
Kochanek, P. M. ;
DeKosky, S. T. ;
Greenberger, J. S. ;
Shvedova, A. A. ;
Kagan, V. E. .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2006, 1757 (5-6) :648-659
[8]  
Bernardi P., 2007, V45, P481
[9]   Inhibition of mitochondrial respiratory complex I by nitric oxide, peroxynitrite and S-nitrosothiols [J].
Brown, GC ;
Borutaite, V .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2004, 1658 (1-2) :44-49
[10]   In vivo modulation of the Parkinsonian phenotype by Nrf2 [J].
Burton, Neal C. ;
Kensler, Thomas W. ;
Guilarte, Tomas R. .
NEUROTOXICOLOGY, 2006, 27 (06) :1094-1100