Respiration-dependent H2O2 Removal in Brain Mitochondria via the Thioredoxin/Peroxiredoxin System

被引:161
作者
Drechsel, Derek A. [1 ]
Patel, Manisha [1 ]
机构
[1] Univ Colorado Denver, Dept Pharmaceut Sci, Aurora, CO 80045 USA
基金
美国国家卫生研究院;
关键词
HYDROGEN-PEROXIDE PRODUCTION; OXIDATIVE STRESS; MAMMALIAN PEROXIREDOXIN; PARKINSONS-DISEASE; THIOREDOXIN; EXPRESSION; CATALASE; NEURODEGENERATION; GLUTATHIONE; INHIBITION;
D O I
10.1074/jbc.M110.101196
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Mitochondrial reactive oxygen species (ROS) play an important role in both physiological cell signaling processes and numerous pathological states, including neurodegenerative disorders such as Parkinson disease. While mitochondria are considered the major cellular source of ROS, their role in ROS removal remains largely unknown. Using polarographic methods for real-time detection of steady-state H2O2 levels, we were able to quantitatively measure the contributions of potential systems toward H2O2 removal by brain mitochondria. Isolated rat brain mitochondria showed significant rates of exogenous H2O2 removal (9-12 nmol/min/mg of protein) in the presence of substrates, indicating a respiration-dependent process. Glutathione systems showed only minimal contributions: 25% decrease with glutathione reductase inhibition and no effect by glutathione peroxidase inhibition. In contrast, inhibitors of thioredoxin reductase, including auranofin and 1-chloro-2,4-dini-trobenzene, attenuated H2O2 removal rates in mitochondria by 80%. Furthermore, a 50% decrease in H2O2 removal was observed following oxidation of peroxiredoxin. Differential oxidation of glutathione or thioredoxin proteins by copper (II) or arsenite, respectively, provided further support for the thioredoxin/peroxiredoxin system as the major contributor to mitochondrial H2O2 removal. Inhibition of the thioredoxin system exacerbated mitochondrial H2O2 production by the redox cycling agent, paraquat. Additionally, decreases in H2O2 removal were observed in intact dopaminergic neurons with thioredoxin reductase inhibition, implicating this mechanism in whole cell systems. Therefore, in addition to their recognized role in ROS production, mitochondria also remove ROS. These findings implicate respiration- and thioredoxin-dependent ROS removal as a potentially important mitochondrial function that may contribute to physiological and pathological processes in the brain.
引用
收藏
页码:27850 / 27858
页数:9
相关论文
共 46 条
[1]   Oxidative stress in neurodegeneration: cause or consequence? [J].
Andersen, JK .
NATURE MEDICINE, 2004, 10 (07) :S18-S25
[2]   Mitochondrial metabolism of reactive oxygen species [J].
Andreyev, AI ;
Kushnareva, YE ;
Starkov, AA .
BIOCHEMISTRY-MOSCOW, 2005, 70 (02) :200-214
[3]  
Arner ESJ, 1999, METHOD ENZYMOL, V300, P226
[4]   Mitochondrial production of hydrogen peroxide regulation by nitric oxide and the role of ubisemiquinone [J].
Boveris, A ;
Cadenas, E .
IUBMB LIFE, 2000, 50 (4-5) :245-250
[5]   Mitochondrial peroxiredoxin 3 is rapidly oxidized in cells treated [J].
Brown, Kristin K. ;
Eriksson, Sofi E. ;
Arner, Elias S. J. ;
Hampton, Mark B. .
FREE RADICAL BIOLOGY AND MEDICINE, 2008, 45 (04) :494-502
[6]   Inhibition of mitochondrial hydrogen peroxide production by lipophilic metalloporphyrins [J].
Castello, Pablo R. ;
Drechsel, Derek A. ;
Day, Brian J. ;
Patel, Manisha .
JOURNAL OF PHARMACOLOGY AND EXPERIMENTAL THERAPEUTICS, 2008, 324 (03) :970-976
[7]   Mitochondria are a major source of paraquat-induced reactive oxygen species production in the brain [J].
Castello, Pablo R. ;
Drechsel, Derek A. ;
Patel, Manisha .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2007, 282 (19) :14186-14193
[8]  
Chae HZ, 1999, METHOD ENZYMOL, V300, P219
[9]   Reactive oxygen species regulation by AIF- and complex I-depleted brain mitochondria [J].
Chinta, Shankar J. ;
Rane, Anand ;
Yadava, Nagendra ;
Andersen, Julie K. ;
Nicholls, David G. ;
Polster, Brian M. .
FREE RADICAL BIOLOGY AND MEDICINE, 2009, 46 (07) :939-947
[10]   PARAQUAT-INDUCED PRODUCTION OF REACTIVE OXYGEN SPECIES IN BRAIN MITOCHONDRIA [J].
Drechsel, Derek A. ;
Patel, Manisha .
METHODS IN ENZYMOLOGY, VOL 456: MITOCHONDRIAL FUNCTION, PART A: MITOCHONDRIAL ELECTRON TRANSPORT COMPLEXES AND REACTIVE OXYGEN SPECIES, 2009, 456 :381-393