A cellular model for Friedreich Ataxia reveals small-molecule glutathione peroxidase mimetics as novel treatment strategy

被引:85
作者
Jauslin, ML
Wirth, T
Meier, T
Schoumacher, F
机构
[1] Myocontract Ltd, CH-4410 Liestal, Switzerland
[2] Cardiff Univ, Dept Chem, Cardiff CF10 3TB, S Glam, Wales
关键词
D O I
10.1093/hmg/11.24.3055
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
Friedreich Ataxia (FRDA), the most prevalent of the inherited ataxias, is a multi-systemic disease with loss of sensory neurons and life-threatening hypertrophic cardiomyopathy as its most severe manifestations. Reduced levels of the mitochondrial protein frataxin lead to cell-damaging oxidative stress and consequently FRDA is considered as a model for more common neurodegenerative disorders in which reactive radicals and oxidative stress are involved. We have developed a cellular assay system that discriminates between fibroblasts from FRDA patients and unaffected donors on the basis of their sensitivity to pharmacological inhibition of de novo synthesis of glutathione. With this assay we observed that supplementation with selenium effectively improved the viability of FRDA fibroblasts, indicating that basal selenium concentrations are not sufficient to allow an adequate increase in the activity of certain detoxification enzymes (such as GPX). Furthermore, we characterized potential drug candidates and found that idebenone, a mitochondrially localized antioxidant that ameliorates cardiomyopathy in FRDA patients, as well as other lipophilic antioxidants protected FRDA cells from cell death. Our results also demonstrate for the first time that small-molecule GPX mimetics have potential as a novel treatment strategy for Friedreich Ataxia and presumably also for other neurodegenerative diseases with mitochondrial impairment.
引用
收藏
页码:3055 / 3063
页数:9
相关论文
共 53 条
[1]  
[Anonymous], 2001, Altern Med Rev, V6, P83
[2]   Regulation of mitochondrial iron accumulation by Yfh1p, a putative homolog of frataxin [J].
Babcock, M ;
deSilva, D ;
Oaks, R ;
DavisKaplan, S ;
Jiralerspong, S ;
Montermini, L ;
Pandolfo, M ;
Kaplan, J .
SCIENCE, 1997, 276 (5319) :1709-1712
[3]   Friedreich's ataxia: Autosomal recessive disease caused by an intronic GAA triplet repeat expansion [J].
Campuzano, V ;
Montermini, L ;
Molto, MD ;
Pianese, L ;
Cossee, M ;
Cavalcanti, F ;
Monros, E ;
Rodius, F ;
Duclos, F ;
Monticelli, A ;
Zara, F ;
Canizares, J ;
Koutnikova, H ;
Bidichandani, SI ;
Gellera, C ;
Brice, A ;
Trouillas, P ;
DeMichele, G ;
Filla, A ;
DeFrutos, R ;
Palau, F ;
Patel, PI ;
DiDonato, S ;
Mandel, JL ;
Cocozza, S ;
Koenig, M ;
Pandolfo, M .
SCIENCE, 1996, 271 (5254) :1423-1427
[4]   Frataxin is reduced in Friedreich ataxia patients and is associated with mitochondrial membranes [J].
Campuzano, V ;
Montermini, L ;
Lutz, Y ;
Cova, L ;
Hindelang, C ;
Jiralerspong, S ;
Trottier, Y ;
Kish, SJ ;
Faucheux, B ;
Trouillas, P ;
Authier, FJ ;
Durr, A ;
Mandel, JL ;
Vescovi, A ;
Pandolfo, M ;
Koenig, M .
HUMAN MOLECULAR GENETICS, 1997, 6 (11) :1771-1780
[5]   Human frataxin maintains mitochondrial iron homeostasis in Saccharomyces cerevisiae [J].
Cavadini, P ;
Gellera, C ;
Patel, PI ;
Isaya, G .
HUMAN MOLECULAR GENETICS, 2000, 9 (17) :2523-2530
[6]   Disabled early recruitment of antioxidant defenses in Friedreich's ataxia [J].
Chantrel-Groussard, K ;
Geromel, V ;
Puccio, H ;
Koenig, M ;
Munnich, A ;
Rötig, A ;
Rustin, P .
HUMAN MOLECULAR GENETICS, 2001, 10 (19) :2061-2067
[7]   Inactivation of the Friedreich ataxia mouse gene leads to early embryonic lethality without iron accumulation [J].
Cossée, M ;
Puccio, H ;
Gansmuller, A ;
Koutnikova, H ;
Dierich, A ;
LeMeur, M ;
Fischbeck, K ;
Dollé, P ;
Koenig, M .
HUMAN MOLECULAR GENETICS, 2000, 9 (08) :1219-1226
[8]   THE NEUROPROTECTIVE EFFICACY OF EBSELEN (A GLUTATHIONE-PEROXIDASE MIMIC) ON BRAIN-DAMAGE INDUCED BY TRANSIENT FOCAL CEREBRAL-ISCHEMIA IN THE RAT [J].
DAWSON, DA ;
MASAYASU, H ;
GRAHAM, DI ;
MACRAE, IM .
NEUROSCIENCE LETTERS, 1995, 185 (01) :65-69
[9]   Mice with a homozygous null mutation for the most abundant glutathione peroxidase, Gpx1, show increased susceptibility to the oxidative stress-inducing agents paraquat and hydrogen peroxide [J].
de Haan, JB ;
Bladier, C ;
Griffiths, P ;
Kelner, M ;
O'Shea, RD ;
Cheung, NS ;
Bronson, RT ;
Silvestro, MJ ;
Wild, S ;
Zheng, SS ;
Beart, PM ;
Hertzog, PJ ;
Kola, I .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1998, 273 (35) :22528-22536
[10]  
Delatycki MB, 1999, AM J MED GENET, V87, P168, DOI 10.1002/(SICI)1096-8628(19991119)87:2<168::AID-AJMG8>3.0.CO