The gene encoding gigaxonin, a new member of the cytoskeletal BTB/kelch repeat family, is mutated in giant axonal neuropathy

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作者
Pascale Bomont
Laurent Cavalier
François Blondeau
Christiane Ben Hamida
Samir Belal
Meriem Tazir
Ercan Demir
Haluk Topaloglu
Rudolf Korinthenberg
Beyhan Tüysüz
Pierre Landrieu
Fayçal Hentati
Michel Koenig
机构
[1] Institut de Génétique et de Biologie Moléculaire et Cellulaire,Department of Pediatric Neurology
[2] CNRS/INSERM/ULP,Abteilung Neuropädiatrie und Muskelerkrankungen
[3] Laboratoire de Génétique Moléculaire et Chromosomique,Department of Pediatrics, Division of Genetics
[4] Institut de Génétique Humaine,Département de Pédiatrie
[5] Institut de Biologie,undefined
[6] Laboratoire de Neuropathologie et Neurobiologie Moléculaire,undefined
[7] Institut National de Neurologie,undefined
[8] Service de Neurologie,undefined
[9] Hacettepe Üniversitesi,undefined
[10] Universitäts-Kinderklinik,undefined
[11] Cerrahpasa Tip Fakültesi,undefined
[12] Istanbul Üniversitesi,undefined
[13] Service de Neurologie,undefined
[14] Hôpital Universitaire de Bicêtre,undefined
[15] Kremlin-Bicêtre,undefined
来源
Nature Genetics | 2000年 / 26卷
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摘要
Disorganization of the neurofilament network is a prominent feature of several neurodegenerative disorders including amyotrophic lateral sclerosis (ALS), infantile spinal muscular atrophy and axonal Charcot-Marie-Tooth disease1,2,3,4. Giant axonal neuropathy (GAN, MIM 256850), a severe, autosomal recessive sensorimotor neuropathy affecting both the peripheral nerves and the central nervous system, is characterized by neurofilament accumulation, leading to segmental distension of the axons5,6. GAN corresponds to a generalized disorganization of the cytoskeletal intermediate filaments (IFs), to which neurofilaments belong, as abnormal aggregation of multiple tissue-specific IFs has been reported: vimentin in endothelial cells, Schwann cells and cultured skin fibroblasts, and glial fibrillary acidic protein (GFAP) in astrocytes7,8,9,10,11. Keratin IFs also seem to be alterated, as most patients present characteristic curly or kinky hairs12. We report here identification of the gene GAN, which encodes a novel, ubiquitously expressed protein we have named gigaxonin. We found one frameshift, four nonsense and nine missense mutations in GAN of GAN patients. Gigaxonin is composed of an amino-terminal BTB (for Broad-Complex, Tramtrack and Bric a brac) domain followed by a six kelch repeats, which are predicted to adopt a β-propeller shape13. Distantly related proteins sharing a similar domain organization have various functions associated with the cytoskeleton, predicting that gigaxonin is a novel and distinct cytoskeletal protein that may represent a general pathological target for other neurodegenerative disorders with alterations in the neurofilament network.
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页码:370 / 374
页数:4
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