Recent Advances in the Genetics of Cerebellar Ataxias

被引:57
作者
Sailer, Anna [1 ]
Houlden, Henry [1 ]
机构
[1] Inst Neurol, Dept Mol Neurosci, London WC1N 3BG, England
基金
英国惠康基金; 英国医学研究理事会;
关键词
Genetics; Cerebellar ataxia; SCA; Next-generation sequencing; Exome; MULTIPLE SYSTEM ATROPHY; SPINOCEREBELLAR-ATAXIA; FRIEDREICHS-ATAXIA; DOMINANT SPINOCEREBELLAR; POLYGLUTAMINE EXPANSIONS; TRINUCLEOTIDE REPEAT; OCULOMOTOR APRAXIA; CLINICAL-FEATURES; MISSENSE MUTATION; RECESSIVE ATAXIA;
D O I
10.1007/s11910-012-0267-6
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
The hereditary cerebellar ataxias are a clinically and genetically heterogeneous group of disorders that primarily affect the cerebellum; often there are additional features such as neuropathy, cognitive decline, or maculopathy that help define the clinical subtype of ataxia. They are commonly classified according to their mode of inheritance into autosomal dominant, autosomal recessive, X-linked, and mitochondrial forms. Great advances have been made in understanding the genetics of cerebellar ataxias in the last 15 years. At least 36 different forms of ADCA are known, 20 autosomal-recessive, two X-linked, and several forms of ataxia associated with mitochondrial defects are known to date. However, in about 40 % of suspected genetically determined ataxia cases, the underlying genetic defect remains undetermined. Although the majority of disease genes have been found in the last two decades, over the last 2 years the genetics has undergone a methodological revolution. New DNA sequencing technologies are enabling us to investigate the whole or large targeted proportions of the genome in a rapid, affordable, and comprehensive way. Exome and targeted sequencing has recently identified four new genes causing ataxia: TGM6, ANO10, SYT14, and rundataxin. This approach is likely to continue to discover new ataxia genes and make screening of existing genes more effective. Translating the genetic findings into isolated and overlapping disease pathways will help stratify patient groups and identify therapeutic targets for ataxia that have so far remained undiscovered.
引用
收藏
页码:227 / 236
页数:10
相关论文
共 79 条
[11]   Spinocerebellar Ataxia Type 12 Identified in Two Italian Families May Mimic Sporadic Ataxia [J].
Brussino, Alessandro ;
Graziano, Claudio ;
Giobbe, Dario ;
Ferrone, Marina ;
Dragone, Elisa ;
Arduino, Carlo ;
Lodi, Raffaele ;
Tonon, Caterina ;
Gabellini, Anna ;
Rinaldi, Rita ;
Miccoli, Sara ;
Grosso, Enrico ;
Bellati, Maria Cristina ;
Orsi, Laura ;
Migone, Nicola ;
Brusco, Alfredo .
MOVEMENT DISORDERS, 2010, 25 (09) :1269-1273
[12]   Missense Mutations in the AFG3L2 Proteolytic Domain Account for ∼1.5% of European Autosomal Dominant Cerebellar Ataxias [J].
Cagnoli, Claudia ;
Stevanin, Giovanni ;
Brussino, Alessandro ;
Barberis, Marco ;
Mancini, Cecilia ;
Margolis, Russell L. ;
Holmes, Susan E. ;
Nobili, Marcello ;
Forlani, Sylvie ;
Padovan, Sergio ;
Pappi, Patrizia ;
Zaros, Cecile ;
Leber, Isabelle ;
Ribai, Pascale ;
Pugliese, Luisa ;
Assalto, Corrado ;
Brice, Alexis ;
Migone, Nicola ;
Duerr, Alexandra ;
Brusco, Alfredo .
HUMAN MUTATION, 2010, 31 (10) :1117-1124
[13]   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
[14]   GAMETIC AND SOMATIC TISSUE-SPECIFIC HETEROGENEITY OF THE EXPANDED SCA1 CAG REPEAT IN SPINOCEREBELLAR ATAXIA TYPE-1 [J].
CHONG, SS ;
MCCALL, AE ;
COTA, J ;
SUBRAMONY, SH ;
ORR, HT ;
HUGHES, MR ;
ZOGHBI, HY .
NATURE GENETICS, 1995, 10 (03) :344-350
[15]   The clinical diagnosis of POLG disease and other mitochondrial DNA depletion disorders [J].
Cohen, Bruce H. ;
Naviaux, Robert K. .
METHODS, 2010, 51 (04) :364-373
[16]   Mutations in the mitochondrial protease gene AFG3L2 cause dominant hereditary ataxia SCA28 [J].
Di Bella, Daniela ;
Lazzaro, Federico ;
Brusco, Alfredo ;
Plumari, Massimo ;
Battaglia, Giorgio ;
Pastore, Annalisa ;
Finardi, Adele ;
Cagnoli, Claudia ;
Tempia, Filippo ;
Frontali, Marina ;
Veneziano, Liana ;
Sacco, Tiziana ;
Boda, Enrica ;
Brussino, Alessandro ;
Bonn, Florian ;
Castellotti, Barbara ;
Baratta, Silvia ;
Mariotti, Caterina ;
Gellera, Cinzia ;
Fracasso, Valentina ;
Magri, Stefania ;
Langer, Thomas ;
Plevani, Paolo ;
Di Donato, Stefano ;
Muzi-Falconi, Marco ;
Taroni, Franco .
NATURE GENETICS, 2010, 42 (04) :313-U66
[17]   Exome Sequencing Reveals a Homozygous SYT14 Mutation in Adult-Onset, Autosomal-Recessive Spinocerebellar Ataxia with Psychomotor Retardation [J].
Doi, Hiroshi ;
Yoshida, Kunihiro ;
Yasuda, Takao ;
Fukuda, Mitsunori ;
Fukuda, Yoko ;
Morita, Hiroshi ;
Ikeda, Shu-ichi ;
Kato, Rumiko ;
Tsurusaki, Yoshinori ;
Miyake, Noriko ;
Saitsu, Hirotomo ;
Sakai, Haruya ;
Miyatake, Satoko ;
Shiina, Masaaki ;
Nukina, Nobuyuki ;
Koyano, Shigeru ;
Tsuji, Shoji ;
Kuroiwa, Yoshiyuki ;
Matsumoto, Naomichi .
AMERICAN JOURNAL OF HUMAN GENETICS, 2011, 89 (02) :320-327
[18]   Clinical and genetic study of autosomal recessive cerebellar ataxia type 1 [J].
Dupre, Nicolas ;
Gros-Louis, Francois ;
Chrestian, Nicolas ;
Verreault, Steve ;
Brunet, Denis ;
de Verteuil, Danielle ;
Brats, Bernard ;
Bouchard, Jean-Pierre ;
Rouleau, Guy A. .
ANNALS OF NEUROLOGY, 2007, 62 (01) :93-98
[19]   Autosomal dominant cerebellar ataxias: polyglutamine expansions and beyond [J].
Durr, Alexandra .
LANCET NEUROLOGY, 2010, 9 (09) :885-894
[20]   KCNC3: Phenotype, Mutations, Channel Biophysics-a Study of 260 Familial Ataxia Patients [J].
Figueroa, Karla P. ;
Minassian, Natali A. ;
Stevanin, Giovanni ;
Waters, Michael ;
Garibyan, Vartan ;
Forlani, Sylvie ;
Strzelczyk, Adam ;
Buerk, Katrin ;
Brice, Alexis ;
Duerr, Alexandra ;
Papazian, Diane M. ;
Pulst, Stefan M. .
HUMAN MUTATION, 2010, 31 (02) :191-196