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Genome‐wide single nucleotide polymorphism‐based autozygosity mapping facilitates identification of mutations in consanguineous families with epidermolysis bullosa

机译:基因组的单核苷酸多态性的自动精型映射有助于鉴定近端家族的突变,具有表皮分解Bullosa

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摘要

Abstract Autozygosity mapping (AM) is a technique utilised for mapping homozygous autosomal recessive (AR) traits and facilitation of genetic diagnosis. We investigated the utility of AM for the molecular diagnosis of heterogeneous AR disorders, using epidermolysis bullosa (EB) as a paradigm. We applied this technique to a cohort of 46 distinct EB families using both short tandem repeat (STR) and genome‐wide single nucleotide polymorphism (SNP) array‐based AM to guide targeted Sanger sequencing of EB candidate genes. Initially, 39 of the 46 cases were diagnosed with homozygous mutations using this method. Independently, 26 cases, including the seven initially unresolved cases, were analysed with an EB‐targeted next‐generation sequencing (NGS) panel. NGS identified mutations in five additional cases, initially undiagnosed due to the presence of compound heterozygosity, deep intronic mutations or runs of homozygosity below the set threshold of 2?Mb, for a total yield of 44 of 46 cases (95.7%) diagnosed genetically.
机译:摘要自动精度映射(AM)是用于将纯合常染色体隐性(AR)性状的技术进行映射和促进遗传诊断的技术。我们研究了AM对异质AR疾病的分子诊断的效用,使用表皮细胞Bullosa(EB)作为范式。我们将该技术应用于使用短串联重复(str)和基因组宽的单核苷酸多态性(SNP)阵列的AM以引导EB候选基因的靶向Sanger测序的46个不同的EB系列的群组。最初,使用该方法诊断出46例中的39例。用EB-TAMEDED的下一代测序(NGS)小组分析26例,包括七种最初未解决的病例,包括七种初始未解决的病例。 NGS在五种额外情况下鉴定突变,最初未诊断出化合物杂合子,深肾内突变或纯合的纯合子的持续阈值的存在,总收率为44例(95.7%)诊断。

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