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Improved molecular diagnosis of dystrophinopathies in an unselected clinical cohort.

机译:在未经选择的临床队列中改善了营养不良症的分子诊断。

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Mutations in the DMD gene result in Duchenne muscular dystrophy (DMD) and Becker muscular dystrophy (BMD). Readily available clinical tests detect only deletions of one exon or greater, which are found in approximately 60% of cases. Mutational analysis of other types of DMD mutations, such as premature stop codons and small frameshifting insertions or deletions, has historically been hampered by the large size of the gene. We have recently reported a method that allows the rapid and economical sequencing of the entire coding region of the DMD gene, and that is more sensitive than methods based on single-strand conformational polymorphism (SSCP) screening or other preliminary screening steps. Here we use single condition amplification/internal primer (SCAIP) sequencing analysis, in combination with multiplex amplifiable probe hybridization (MAPH) analysis of duplications, to report the frequency of mutations in a large cohort of unselected dystrophinopathy patients from a single clinic. Our results indicate that 7% of dystrophinopathy patients do not have coding region mutations, suggesting that intronic mutations are not uncommon. The availability of rapid and thorough mutation analysis from peripheral blood samples, along with an improved estimate of the percentage of non-coding region mutations, will be of benefit for improved genetic counseling and in identification of cohorts for clinical trials.
机译:DMD基因的突变会导致Duchenne肌营养不良(DMD)和Becker肌营养不良(BMD)。现成的临床测试仅检测到一个外显子或一个以上外显子的缺失,大约在60%的病例中发现了该缺失。从历史上看,其他类型的DMD突变(例如过早的终止密码子和小的移码插入或缺失)的突变分析一直被基因的大尺寸所阻碍。我们最近报道了一种方法,该方法可以对DMD基因的整个编码区进行快速而经济的测序,并且比基于单链构象多态性(SSCP)筛选或其他初步筛选步骤的方法更为灵敏。在这里,我们使用单条件扩增/内部引物(SCAIP)测序分析,以及重复的多重可扩增探针杂交(MAPH)分析,以报告来自同一诊所的一大批未选择的肌营养不良症患者的突变频率。我们的结果表明,有7%的肌营养不良症患者没有编码区突变,这表明内含子突变并不少见。从外周血样品中进行快速彻底的突变分析以及对非编码区突变百分比的改进估计,将对改进遗传咨询和鉴定临床试验人群有益。

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