Mutations in the mitochondrial protease gene AFG3L2 cause dominant hereditary ataxia SCA28

被引:236
作者
Di Bella, Daniela [1 ]
Lazzaro, Federico [2 ]
Brusco, Alfredo [3 ,4 ]
Plumari, Massimo [1 ]
Battaglia, Giorgio [5 ]
Pastore, Annalisa [6 ]
Finardi, Adele [5 ]
Cagnoli, Claudia [3 ,4 ]
Tempia, Filippo [7 ,8 ]
Frontali, Marina [9 ]
Veneziano, Liana [9 ]
Sacco, Tiziana [7 ,8 ]
Boda, Enrica [7 ,8 ]
Brussino, Alessandro [3 ,4 ]
Bonn, Florian [10 ,11 ]
Castellotti, Barbara [1 ]
Baratta, Silvia [1 ]
Mariotti, Caterina [1 ]
Gellera, Cinzia [1 ]
Fracasso, Valentina [1 ]
Magri, Stefania [1 ]
Langer, Thomas [10 ,11 ]
Plevani, Paolo [2 ]
Di Donato, Stefano [1 ]
Muzi-Falconi, Marco [2 ]
Taroni, Franco [1 ]
机构
[1] Fdn IRCCS, Ist Neurol Carlo Besta, Unit Genet Neurodegenerat & Metab Dis, Milan, Italy
[2] Univ Milan, Dept Biomol Sci & Biotechnol, Milan, Italy
[3] Univ Turin, Dept Genet Biol & Biochem, Turin, Italy
[4] San Giovanni Battista Hosp, Unit Med Genet, Turin, Italy
[5] Fdn IRCCS, Ist Neurol Carlo Besta, Unit Mol Neuroanat, Milan, Italy
[6] Natl Inst Med Res, London NW7 1AA, England
[7] Univ Turin, Physiol Sect, Dept Neurosci, Turin, Italy
[8] Natl Inst Neurosci, Rita Levi Montalcini Ctr Brain Repair, Turin, Italy
[9] CNR, Inst Neurobiol & Mol Med, Rome, Italy
[10] Univ Cologne, Inst Genet, D-5000 Cologne 41, Germany
[11] Univ Cologne, Ctr Mol Med Cologne, D-5000 Cologne 41, Germany
关键词
M-AAA PROTEASE; RESPIRATORY-CHAIN COMPLEXES; SPINOCEREBELLAR ATAXIA; SPASTIC PARAPLEGIA; CEREBELLAR ATAXIAS; SUBSTRATE RECOGNITION; SUBUNIT COMPOSITION; CLINICAL-FEATURES; ATP HYDROLYSIS; FTSH;
D O I
10.1038/ng.544
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Autosomal dominant spinocerebellar ataxias (SCAs) are genetically heterogeneous neurological disorders characterized by cerebellar dysfunction mostly due to Purkinje cell degeneration. Here we show that AFG3L2 mutations cause SCA type 28. Along with paraplegin, which causes recessive spastic paraplegia, AFG3L2 is a component of the conserved m-AAA metalloprotease complex involved in the maintenance of the mitochondrial proteome. We identified heterozygous missense mutations in five unrelated SCA families and found that AFG3L2 is highly and selectively expressed in human cerebellar Purkinje cells. m-AAA-deficient yeast cells expressing human mutated AFG3L2 homocomplex show respiratory deficiency, proteolytic impairment and deficiency of respiratory chain complex IV. Structure homology modeling indicates that the mutations may affect AFG3L2 substrate handling. This work identifies AFG3L2 as a novel cause of dominant neurodegenerative disease and indicates a previously unknown role for this component of the mitochondrial protein quality control machinery in protecting the human cerebellum against neurodegeneration.
引用
收藏
页码:313 / U66
页数:11
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