Skip to main content
Top
Published in: Journal of Neurology 12/2015

01-12-2015 | Original Communication

Powerhouse failure and oxidative damage in autosomal recessive spastic ataxia of Charlevoix-Saguenay

Authors: Chiara Criscuolo, C. Procaccini, M. C. Meschini, A. Cianflone, R. Carbone, S. Doccini, D. Devos, C. Nesti, I. Vuillaume, M. Pellegrino, A. Filla, G. De Michele, G. Matarese, F. M. Santorelli

Published in: Journal of Neurology | Issue 12/2015

Login to get access

Abstract

Autosomal recessive spastic ataxia of Charlevoix-Saguenay (ARSACS) is a neurodegenerative disease due to mutations in SACS, which encodes sacsin, a protein localized on the mitochondrial surface and possibly involved in mitochondrial dynamics. In view of the possible mitochondrial involvement of sacsin, we investigated mitochondrial activity at functional and molecular level in skin fibroblasts obtained from ARSACS patients. We observed remarkable bioenergetic damage in ARSACS cells, as indicated by reduced basal, adenosine triphosphate (ATP)-linked and maximal mitochondrial respiration rate, and by reduced respiratory chain activities and mitochondrial ATP synthesis. These phenomena were associated with increased reactive oxygen species production and oxidative nuclear DNA damage. Our results suggest that loss of sacsin is associated with oxidative stress and mitochondrial dysfunction, and thus highlight a novel mechanism in the pathogenesis of ARSACS. The involvement of mitochondria and oxidative stress in disease pathogenesis has been described in a number of other neurodegenerative diseases. Therefore, on the basis of our findings, which suggest a potential therapeutic role for antioxidant agents, ARSACS seems to fall within a larger group of disorders.
Appendix
Available only for authorised users
Literature
1.
go back to reference Engert JC, Bérubé P, Mercier J, Doré C, Lepage P, Ge B et al (2000) ARSACS, a spastic ataxia common in northeastern Québec, is caused by mutations in a new gene encoding an 11.5-kb ORF. Nat Genet 24:120–125CrossRefPubMed Engert JC, Bérubé P, Mercier J, Doré C, Lepage P, Ge B et al (2000) ARSACS, a spastic ataxia common in northeastern Québec, is caused by mutations in a new gene encoding an 11.5-kb ORF. Nat Genet 24:120–125CrossRefPubMed
2.
go back to reference Girard M, Larivière R, Parfitt DA, Deane EC, Gaudet R, Nossova N et al (2012) Mitochondrial dysfunction and Purkinje cell loss in autosomal recessive spastic ataxia of Charlevoix-Saguenay (ARSACS). Proc Natl Acad Sci USA 109:1661–1666PubMedCentralCrossRefPubMed Girard M, Larivière R, Parfitt DA, Deane EC, Gaudet R, Nossova N et al (2012) Mitochondrial dysfunction and Purkinje cell loss in autosomal recessive spastic ataxia of Charlevoix-Saguenay (ARSACS). Proc Natl Acad Sci USA 109:1661–1666PubMedCentralCrossRefPubMed
3.
go back to reference Pilliod J, Moutton S, Lavie J, Maurat E, Hubert C, Bellance N et al (2015) New practical definitions for the diagnosis of autosomal recessive spastic ataxia of Charlevoix-Saguenay. Ann Neurol. doi:10.1002/ana.24509 (Epub ahead of print) Pilliod J, Moutton S, Lavie J, Maurat E, Hubert C, Bellance N et al (2015) New practical definitions for the diagnosis of autosomal recessive spastic ataxia of Charlevoix-Saguenay. Ann Neurol. doi:10.​1002/​ana.​24509 (Epub ahead of print)
4.
go back to reference Criscuolo C, Banfi S, Orio M, Gasparini P, Monticelli A, Scarano V et al (2004) A novel mutation in SACS gene in a family from southern Italy. Neurology 62:100–102CrossRefPubMed Criscuolo C, Banfi S, Orio M, Gasparini P, Monticelli A, Scarano V et al (2004) A novel mutation in SACS gene in a family from southern Italy. Neurology 62:100–102CrossRefPubMed
5.
go back to reference Desserre J, Devos D, Sautière BG, Debruyne P, Santorelli FM, Vuillaume I et al (2011) Thickening of peripapillar retinal fibers for the diagnosis of autosomal recessive spastic ataxia of Charlevoix-Saguenay. Cerebellum 10:758–762CrossRefPubMed Desserre J, Devos D, Sautière BG, Debruyne P, Santorelli FM, Vuillaume I et al (2011) Thickening of peripapillar retinal fibers for the diagnosis of autosomal recessive spastic ataxia of Charlevoix-Saguenay. Cerebellum 10:758–762CrossRefPubMed
6.
go back to reference Divakaruni AS, Paradyse A, Ferrick DA, Murphy AN, Jastroch M (2014) Analysis and interpretation of microplate-based oxygen consumption and pH data. Methods Enzymol 547:309–354CrossRefPubMed Divakaruni AS, Paradyse A, Ferrick DA, Murphy AN, Jastroch M (2014) Analysis and interpretation of microplate-based oxygen consumption and pH data. Methods Enzymol 547:309–354CrossRefPubMed
7.
go back to reference Spinazzi M, Casarin A, Pertegato V, Salviati L, Angelini C (2012) Assessment of mitochondrial respiratory chain enzymatic activities on tissues and cultured cells. Nat Protoc 7:1235–1246CrossRefPubMed Spinazzi M, Casarin A, Pertegato V, Salviati L, Angelini C (2012) Assessment of mitochondrial respiratory chain enzymatic activities on tissues and cultured cells. Nat Protoc 7:1235–1246CrossRefPubMed
8.
go back to reference Nogueira C, Meschini MC, Nesti C, Garcia P, Diogo L, Valongo C et al (2015) A novel SUCLA2 mutation in a Portuguese child associated with “mild” methylmalonic aciduria. J Child Neurol 30:228–232CrossRefPubMed Nogueira C, Meschini MC, Nesti C, Garcia P, Diogo L, Valongo C et al (2015) A novel SUCLA2 mutation in a Portuguese child associated with “mild” methylmalonic aciduria. J Child Neurol 30:228–232CrossRefPubMed
9.
go back to reference Guillery O, Malka F, Frachon P, Milea D, Rojo M, Lombès A (2008) Modulation of mitochondrial morphology by bioenergetics defects in primary human fibroblasts. Neuromuscul Disord 18:319–330CrossRefPubMed Guillery O, Malka F, Frachon P, Milea D, Rojo M, Lombès A (2008) Modulation of mitochondrial morphology by bioenergetics defects in primary human fibroblasts. Neuromuscul Disord 18:319–330CrossRefPubMed
10.
go back to reference Dagda RK, Cherra SJ 3rd, Kulich SM, Tandon A, Park D, Chu CT (2009) Loss of PINK1 function promotes mitophagy through effects on oxidative stress and mitochondrial fission. J Biol Chem 284:13843–13855PubMedCentralCrossRefPubMed Dagda RK, Cherra SJ 3rd, Kulich SM, Tandon A, Park D, Chu CT (2009) Loss of PINK1 function promotes mitophagy through effects on oxidative stress and mitochondrial fission. J Biol Chem 284:13843–13855PubMedCentralCrossRefPubMed
11.
go back to reference Santambrogio P, Dusi S, Guaraldo M, Rotundo LI, Broccoli V, Garavaglia B et al (2015) Mitochondrial iron and energetic dysfunction distinguish fibroblasts and induced neurons from pantothenate kinase-associated neurodegeneration patients. Neurobiol Dis S0969–S9961(15)00098–4 (Epub ahead of print) Santambrogio P, Dusi S, Guaraldo M, Rotundo LI, Broccoli V, Garavaglia B et al (2015) Mitochondrial iron and energetic dysfunction distinguish fibroblasts and induced neurons from pantothenate kinase-associated neurodegeneration patients. Neurobiol Dis S0969–S9961(15)00098–4 (Epub ahead of print)
12.
go back to reference Porcelli AM, Angelin A, Ghelli A, Mariani E, Martinuzzi A, Carelli V et al (2009) Respiratory complex I dysfunction due to mitochondrial DNA mutations shifts the voltage threshold for opening of the permeability transition pore toward resting levels. J Biol Chem 284:2045–2052CrossRefPubMed Porcelli AM, Angelin A, Ghelli A, Mariani E, Martinuzzi A, Carelli V et al (2009) Respiratory complex I dysfunction due to mitochondrial DNA mutations shifts the voltage threshold for opening of the permeability transition pore toward resting levels. J Biol Chem 284:2045–2052CrossRefPubMed
13.
go back to reference Suraweera A, Becherel OJ, Chen P, Rundle N, Woods R, Nakamura J et al (2007) Senataxin, defective in ataxia oculomotor apraxia type 2, is involved in the defense against oxidative DNA damage. J Cell Biol 177:969–979PubMedCentralCrossRefPubMed Suraweera A, Becherel OJ, Chen P, Rundle N, Woods R, Nakamura J et al (2007) Senataxin, defective in ataxia oculomotor apraxia type 2, is involved in the defense against oxidative DNA damage. J Cell Biol 177:969–979PubMedCentralCrossRefPubMed
14.
go back to reference Cooke MS, Mistry N, Ladapo A, Herbert NE, Lunec J (2000) Immunochemical quantitation of UV-induced oxidative and dimeric DNA damage to human keratinocytes. Free Radic Res 33:369–381CrossRefPubMed Cooke MS, Mistry N, Ladapo A, Herbert NE, Lunec J (2000) Immunochemical quantitation of UV-induced oxidative and dimeric DNA damage to human keratinocytes. Free Radic Res 33:369–381CrossRefPubMed
16.
go back to reference Kaminskyy VO, Zhivotovsky B (2014) Free radicals in cross talk between autophagy and apoptosis. Antioxid Redox Signal 21:86–102CrossRefPubMed Kaminskyy VO, Zhivotovsky B (2014) Free radicals in cross talk between autophagy and apoptosis. Antioxid Redox Signal 21:86–102CrossRefPubMed
Metadata
Title
Powerhouse failure and oxidative damage in autosomal recessive spastic ataxia of Charlevoix-Saguenay
Authors
Chiara Criscuolo
C. Procaccini
M. C. Meschini
A. Cianflone
R. Carbone
S. Doccini
D. Devos
C. Nesti
I. Vuillaume
M. Pellegrino
A. Filla
G. De Michele
G. Matarese
F. M. Santorelli
Publication date
01-12-2015
Publisher
Springer Berlin Heidelberg
Published in
Journal of Neurology / Issue 12/2015
Print ISSN: 0340-5354
Electronic ISSN: 1432-1459
DOI
https://doi.org/10.1007/s00415-015-7911-4

Other articles of this Issue 12/2015

Journal of Neurology 12/2015 Go to the issue