The genetics and neuropathology of amyotrophic lateral sclerosis

被引:0
作者
Ammar Al-Chalabi
Ashley Jones
Claire Troakes
Andrew King
Safa Al-Sarraj
Leonard H. van den Berg
机构
[1] King’s College London,Department of Clinical Neuroscience
[2] Institute of Psychiatry,Department of Clinical Neuropathology
[3] King’s College Hospital,Department of Neurology, Rudolf Magnus Institute of Neuroscience
[4] University Medical Centre,undefined
来源
Acta Neuropathologica | 2012年 / 124卷
关键词
Amyotrophic lateral sclerosis; Frontotemporal dementia; Gene; Familial; Sporadic; c9orf72; sod1; tardbp; tdp-43; fus; ubqln2; optn; ALS; FTD; FTLD; Genetics; Pathology;
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摘要
Amyotrophic lateral sclerosis (ALS) is a neurodegenerative disease of motor neurons leading to death from respiratory failure within about 3 years of symptom onset. A family history of ALS is obtained in about 5 % but the distinction between familial and apparently sporadic ALS is artificial and genetic factors play a role in all types. For several years, only one gene was known to have a role in ALS pathogenesis, SOD1. In the last few years there has been a rapid advance in our genetic knowledge of the causes of ALS, and the relationship of the genetic subtypes with pathological subtypes and clinical phenotype. Mutations in the gene for TDP-43 protein, TARDBP, highlight this, with pathology mimicking closely that found in other types of ALS, and a phenotypic spectrum that includes frontotemporal dementia. Mutations in the FUS gene, closely related to TDP-43, lead to a similar clinical phenotype but distinct pathology, so that the three pathological groups represented by SOD1, TARDBP, and FUS are distinct. In this review, we explore the genetic architecture of ALS, highlight some of the genes implicated in pathogenesis, and describe their phenotypic range and overlap with other diseases.
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页码:339 / 352
页数:13
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[1]  
Al-Chalabi A(1999)Deletions of the heavy neurofilament subunit tail in amyotrophic lateral sclerosis Hum Mol Genet 8 157-164
[2]  
Andersen PM(2010)An estimate of amyotrophic lateral sclerosis heritability using twin data J Neurol Neurosurg Psychiatry 81 1324-1326
[3]  
Nilsson P(2011)Modelling the effects of penetrance and family size on rates of sporadic and familial disease Hum Hered 71 281-288
[4]  
Al-Chalabi A(2011)A mutation in sigma-1 receptor causes juvenile amyotrophic lateral sclerosis Ann Neurol 70 913-919
[5]  
Fang F(2011)p62 positive, TDP-43 negative, neuronal cytoplasmic and intranuclear inclusions in the cerebellum and hippocampus define the pathology of C9orf72-linked FTLD and MND/ALS Acta Neuropathol 122 691-702
[6]  
Hanby MF(1995)Amyotrophic lateral sclerosis associated with homozygosity for an Asp90Ala mutation in CuZn-superoxide dismutase Nat Genet 10 61-66
[7]  
Al-Chalabi A(2011)Clinical genetics of amyotrophic lateral sclerosis: what do we really know? Nat Rev Neurol 7 603-615
[8]  
Lewis CM(1993)ALS, SOD and peroxynitrite Nature 364 584-1403
[9]  
Al-Saif A(2010)Wild-type and mutant SOD1 share an aberrant conformation and a common pathogenic pathway in ALS Nat Neurosci 13 1396-219
[10]  
Al-Mohanna F(2011)Clinical, neuroimaging and neuropathological features of a new chromosome 9p-linked FTD-ALS family J Neurol Neurosurg Psychiatr 12 215-159