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Up-regulation of mitochondrial uncoupling protein 3 reveals an early muscular metabolic defect in amyotrophic lateral sclerosis

Authors :
Marc de Tapia
Vincent Meininger
Hugues Oudart
Luc Dupuis
Jean-Philippe Loeffler
Frédérique René
Pierre-François Pradat
Franck Di Scala
Source :
FASEB journal : official publication of the Federation of American Societies for Experimental Biology. 17(14)
Publication Year :
2003

Abstract

Amyotrophic lateral sclerosis (ALS) is a neurodegenerative disorder affecting primarily motor neurons. Growing evidence suggests a mitochondrial defect in ALS. The precise molecular mechanisms underlying those defects are unknown. We studied the expression of mitochondrial uncoupling proteins (UCPs), key regulators of mitochondrial functions, in tissues from a mouse model of ALS (SOD1 G86R transgenic mice) and from muscular biopsies of human sporadic ALS. Surprisingly, in SOD1 G86R mice, UCPs, and particularly UCP3, were upregulated in skeletal muscle but not in spinal cord. Consistent with this pattern of expression, ATP levels were selectively depleted in muscle but not in neural tissues 1 month before disease onset and the respiratory control ratio of isolated mitochondria is decreased. UCP3 up-regulation was not observed in experimentally denervated muscles, suggesting that changes in muscular UCP3 expression are associated with the physiopathological processes of ALS. This is further supported by our observation of increased UCP3 levels in human ALS muscular biopsies. We propose that UCP3 up-regulation in skeletal muscle contributes to the characteristic mitochondrial damage of ALS and to the onset of the disease. Moreover, since skeletal muscle is a key metabolic tissue, our findings suggest that ALS may not solely arise from neuronal events but also from more generalized metabolic defects.

Details

ISSN :
15306860
Volume :
17
Issue :
14
Database :
OpenAIRE
Journal :
FASEB journal : official publication of the Federation of American Societies for Experimental Biology
Accession number :
edsair.doi.dedup.....2f89b87cefaebd6bf108e30e8138658c