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A novel genomic disorder: a deletion of the SACS gene leading to spastic ataxia of Charlevoix-Saguenay

机译:一种新的基因组疾病:SACS基因的缺失导致Charlevoix-Saguenay痉挛性共济失调

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摘要

We report a Belgian patient with early-onset cerebellar ataxia, progressive spasticity, learning difficulties and moderate perceptive hearing loss. Array-Comparative Genomic Hybridisation (aCGH) detected a 1.54 Mb deletion on chromosome 13q12.12. This microdeletion occurred de novo and encompasses the SACS gene. Mutations in SACS are known to cause a recessive condition, similar to the patient's phenotype, called autosomal recessive spastic ataxia of Charlevoix-Saguenay (ARSACS). Sequencing of the remaining SACS allele revealed a hemizygous mutation c.10517T>C in exon 9, resulting in an amino-acid substitution (p.F3506S). This is the first patient with ARSACS that carries a de novo chromosomal deletion comprising SACS. We demonstrate the presence of homologous segmental duplications at the breakpoint-containing regions. This suggests non-allelic homologous recombination as the mechanism generating this deletion and explains the previous description of copy number variations of this region. This finding confirms the contribution of aCGH to gene identification in autosomal recessive disorders.
机译:我们报道了一名比利时患者,该患者患有早发性小脑共济失调,进行性痉挛,学习困难和中度知觉性听力丧失。阵列比较基因组杂交(aCGH)在13q12.12染色体上检测到1.54 Mb缺失。这种微缺失从头发生,并涵盖了SACS基因。已知SACS中的突变会导致隐性病状,类似于患者的表型,称为Charlevoix-Saguenay常染色体隐性痉挛性共济失调(ARSACS)。其余SACS等位基因的测序显示外显子9中存在半合子突变c.10517T> C,导致氨基酸取代(p.F3506S)。这是第一位携带包括SACS的从头染色体缺失的ARSACS患者。我们证明了在包含断点的区域存在同源节段重复。这表明非等位基因同源重组是产生这种缺失的机制,并解释了该区域拷贝数变异的先前描述。这一发现证实了aCGH对常染色体隐性遗传性疾病基因鉴定的贡献。

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