Remapping and mutation analysis of benign adult familial myoclonic epilepsy in a Japanese pedigree

被引:0
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作者
Satsuki Mori
Masayuki Nakamura
Takeshi Yasuda
Shu-ichi Ueno
Sunao Kaneko
Akira Sano
机构
[1] Kagoshima University Graduate School of Medical and Dental Sciences,Department of Psychiatry
[2] Kurashikikinen Hospital,Department of Neuropsychiatry
[3] Neuroscience,Department of Neuropsychiatry
[4] Ehime University Graduate School of Medicine,undefined
[5] HirosakiUniversity Graduate School of Medical,undefined
来源
Journal of Human Genetics | 2011年 / 56卷
关键词
array-based comparative genomic hybridization; FCMTE; genome-sequencing; genome-wide scan; SNP analysis;
D O I
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中图分类号
学科分类号
摘要
Benign adult familial myoclonic epilepsy (BAFME), alternatively named familial adult myoclonic epilepsy 1/familial cortical myoclonic tremor with epilepsy 1 (FAME1/FCMTE1), is a hereditary epileptic syndrome characterized by autosomal dominant inheritance, adult-onset tremulous hand movement, myoclonus, infrequent epileptic seizure and non-progressive course without cerebellar ataxia and dementia. We previously reported evidence for linkage of BAFME to the region between D8S1784 and D8S1694 on chromosome 8q. Subsequently, other research groups reported mapping of the same clinical syndrome to different chromosomal loci, 2p and 5p, in Italian (FAME2/FCMTE2) and French (FAME3/FCMTE3) families, respectively. In this study, we performed a genome-wide linkage analysis using 10K single-nucleotide polymorphism arrays and additional microsatellite markers to reconfirm the BAFME-linked region. The BAFME-linked region was mapped to 7.16 Mb spanned by rs1898287 and rs2891799 on chromosomes 8q23.3–8q24.13 with a maximum two-point logarithm of odds score of 6.0 for the marker rs1021897. Sequence analysis and copy-number variant analysis of all 38 genes localized in the candidate region were performed, but no pathogenic mutation was identified. We conclude that the etiology of BAFME remains to be solved, and further genetic studies, which may require analysis in non-coding regions of a gene, introns or intergenic spacer regions, are necessary to reveal its unknown mutations.
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页码:742 / 747
页数:5
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