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首页> 外文期刊>Neuromuscular disorders: NMD >Targeted array comparative genomic hybridization - A new diagnostic tool for the detection of large copy number variations in nemaline myopathy-causing genes
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Targeted array comparative genomic hybridization - A new diagnostic tool for the detection of large copy number variations in nemaline myopathy-causing genes

机译:靶向阵列比较基因组杂交-一种新的诊断工具,用于检测引起肾上腺肌病的基因中的大拷贝数变异

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摘要

Nemaline myopathy (NM) constitutes a heterogeneous group of congenital myopathies. Mutations in the nebulin gene (NEB) are the main cause of recessively inherited NM. NEB is one of the most largest genes in human. To date, 68 NEB mutations, mainly small deletions or point mutations have been published. The only large mutation characterized is the 2.5. kb deletion of exon 55 in the Ashkenazi Jewish population. To investigate any copy number variations in this enormous gene, we designed a novel custom comparative genomic hybridization microarray, NM-CGH, targeted towards the seven known genes causative for NM. During the validation of the NM-CGH array we identified two novel deletions in two different families. The first is the largest deletion characterized in NEB to date, (~53. kb) encompassing 24 exons. The second deletion (1. kb) covers two exons. In both families, the copy number change was the second mutation to be characterized and shown to have been inherited from one of the healthy carrier parents. In addition to these novel mutations, copy number variation was identified in four samples in three families in the triplicate region of NEB. We conclude that this method appears promising for the detection of copy number variations in NEB.
机译:肾上腺肌病(NM)构成先天性肌病的异质性组。星云蛋白基因(NEB)中的突变是隐性遗传NM的主要原因。 NEB是人类中最大的基因之一。迄今为止,已经发表了68种NEB突变,主要是小缺失或点突变。唯一的大突变是2.5。 Ashkenazi犹太人口中外显子55的kb缺失。为了研究这个巨大基因的任何拷贝数变异,我们设计了一种新颖的定制比较基因组杂交微阵列NM-CGH,针对的是引起NM的七个已知基因。在验证NM-CGH阵列的过程中,我们在两个不同的家族中鉴定出两个新的缺失。第一个是迄今为止NEB中最大的缺失(〜53。kb),涵盖24个外显子。第二个删除(1. kb)涵盖两个外显子。在两个家庭中,拷贝数的变化是第二个突变,需要特征化并显示出是从一个健康的携带者父母那里遗传的。除了这些新颖的突变,在NEB的一式三份区域的三个家族中的四个样本中还发现了拷贝数变异。我们得出的结论是,该方法对于检测NEB中的拷贝数变异似乎很有希望。

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