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Targeted Droplet-Digital PCR as a Tool for Novel Deletion Discovery at the DFNB1 Locus

机译:有针对性的液滴数字PCR作为DFNB1基因座新型缺失发现的工具

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Pathogenic variants at the DFNB1 locus encompassing the GJB2 and GJB6 genes account for 50% of autosomal-recessive, congenital nonsyndromic hearing loss in the United States. Most cases are caused by sequence variants within the GJB2 gene, but a significant number of DFNB1 patients carry a large deletion (GJB6-D13S1830) in trans with a GJB2 variant. This deletion lies upstream of GJB2 and was shown to reduce GJB2 expression by disrupting unidentified regulatory elements. First-tier genetic testing for hearing loss includes GJB2 sequence and GJB6-D13S1830 deletion analysis; however, several other deletions in this locus, each with distinct breakpoints, have been reported in DFNB1 patients and are missed by current panels. Here, we report the development of a targeted droplet digital polymerase chain reaction-based assay for comprehensive copy-number analysis at the DFNB1 locus that detects all deletions reported to date. This assay increased detection rates in a multiethnic cohort of 87 hearing loss patients with only one identified pathogenic GJB2 variant. We identify two deletions, one of which is novel, in two patients (2/87 or 2.3%), suggesting that other pathogenic deletions at the DFNB1 locus may be missed. Mapping the assayed DFNB1 deletions also revealed a approximate to 95 kb critical region, which may harbor the GJB2 regulatory element(s).
机译:在美国,包含GJB2和GJB6基因的DFNB1基因座上的致病变体占常染色体隐性先天性非综合征性听力损失的50%。大多数情况是由GJB2基因内的序列变异引起的,但是大量DFNB1患者携带带有GJB2变异的大缺失(GJB6-D13S1830)。该缺失位于GJB2的上游,并显示可通过破坏未知的调控元件来减少GJB2表达。听力损失的一线遗传测试包括GJB2序列和GJB6-D13S1830缺失分析;然而,在DFNB1患者中已经报道了该基因座中的其他一些缺失,每个缺失都有不同的断裂点,但目前的研究小组却忽略了这些缺失。在这里,我们报告了针对目标液滴数字聚合酶链反应的分析方法的开发,该方法用于在DFNB1基因座进行全面的拷贝数分析,以检测迄今为止报道的所有缺失。该测定法提高了多种族队列中的87名听力丧失患者的检出率,这些患者只有一个已识别的致病性GJB2变体。我们在两名患者(2/87或2.3%)中发现了两个缺失,其中一个是新颖的,提示DFNB1基因座的其他病原性缺失可能会被遗漏。绘制测定的DFNB1缺失的图谱也显示了大约95 kb的关键区域,该区域可能包含GJB2调控元件。

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