A mechanism of sulfite neurotoxicity - Direct inhibition of glutamate dehydrogenase

被引:114
作者
Zhang, X [1 ]
Vincent, AS [1 ]
Halliwell, B [1 ]
Wong, KP [1 ]
机构
[1] Natl Univ Singapore, Fac Med, Dept Biochem, Singapore 117597, Singapore
关键词
D O I
10.1074/jbc.M402759200
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
Exposure of Neuro-2a and PC12 cells to micromolar concentrations of sulfite caused an increase in reactive oxygen species and a decrease in ATP. Likewise, the biosynthesis of ATP in intact rat brain mitochondria from the oxidation of glutamate was inhibited by micromolar sulfite. Glutamate-driven respiration increased the mitochondrial membrane potential (MMP), and this was abolished by sulfite but the MMP generated by oxidation of malate and succinate was not affected. The increased rate of production of NADH from exogenous NAD(+) and glutamate added to rat brain mitochondrial extracts was inhibited by sulfite, and mitochondria pre-incubated with sulfite failed to reduce NAD(+). Glutamate dehydrogenase (GDH) in rat brain mitochondrial extract was inhibited dose-dependently by sulfite as was the activity of a purified enzyme. An increase in the K-m ( glutamate) and a decrease in V-max resulting in an attenuation in V-max/K-m ( glutamate) at 100 muM sulfite suggest a mixed type of inhibition. However, uncompetitive inhibition was noted with decreases in both K-m (NAD(+)) and V-max, whereas V-max/K-m (NAD(+)) remained relatively constant. We propose that GDH is one target of action of sulfite, leading to a decrease in alpha-ketoglutarate and a diminished flux through the tricarboxylic acid cycle accompanied by a decrease in NADH through the mitochondrial electron transport chain, a decreased MMP, and a decrease in ATP synthesis. Because glutamate is a major metabolite in the brain, inhibition of GDH by sulfite could contribute to the severe phenotype of sulfite oxidase deficiency in human infants.
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页码:43035 / 43045
页数:11
相关论文
共 53 条
[1]   Potential treatment of transthyretin-type amyloidoses by sulfite [J].
Altland, K ;
Winter, P .
NEUROGENETICS, 1999, 2 (03) :183-188
[2]   Pulsed EPR studies of nonexchangeable protons near the Mo(V) center of sulfite oxidase:: Direct detection of the α-proton of the coordinated cysteinyl residue and structural implications for the active site [J].
Astashkin, AV ;
Raitsimring, AM ;
Feng, CJ ;
Johnson, JL ;
Rajagopalan, KV ;
Enemark, JH .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2002, 124 (21) :6109-6118
[3]   Neurotoxic, effects of fluorinated glucocorticoid preparations on the developing mouse brain: Role of preservatives [J].
Baud, O ;
Laudenbach, V ;
Evrard, P ;
Gressens, P .
PEDIATRIC RESEARCH, 2001, 50 (06) :706-711
[4]   EFFECT OF SULFITE ON THE ENERGY-METABOLISM OF MAMMALIAN-TISSUES IN CORRELATION TO SULFITE OXIDASE ACTIVITY [J].
BECKSPEIER, I ;
HINZE, H ;
HOLZER, H .
BIOCHIMICA ET BIOPHYSICA ACTA, 1985, 841 (01) :81-89
[5]  
BRADFORD MM, 1976, ANAL BIOCHEM, V72, P248, DOI 10.1016/0003-2697(76)90527-3
[6]   PREVALENCE OF SENSITIVITY TO SULFITING AGENTS IN ASTHMATIC-PATIENTS [J].
BUSH, RK ;
TAYLOR, SL ;
HOLDEN, K ;
NORDLEE, JA ;
BUSSE, WW .
AMERICAN JOURNAL OF MEDICINE, 1986, 81 (05) :816-820
[7]   OCCURRENCE AND COMPARISON OF SULFITE OXIDASE ACTIVITY IN MAMMALIAN-TISSUES [J].
CABRE, F ;
MARIN, C ;
CASCANTE, M ;
CANELA, EI .
BIOCHEMICAL MEDICINE AND METABOLIC BIOLOGY, 1990, 43 (02) :159-162
[8]   Amperometric detection of sulfur-containing compounds in alkaline media [J].
Casella, IG ;
Contursi, M ;
Desimoni, E .
ANALYST, 2002, 127 (05) :647-652
[9]   Depolarization of in situ mitochondria due to hydrogen peroxide-induced oxidative stress in nerve terminals:: Inhibition of α-ketoglutarate dehydrogenase [J].
Chinopoulos, C ;
Tretter, L ;
Adam-Vizi, V .
JOURNAL OF NEUROCHEMISTRY, 1999, 73 (01) :220-228
[10]  
COHEN HJ, 1971, J BIOL CHEM, V246, P374