Nicoletti Annalisa, Ziccardi Lucia, Maltese Paolo Enrico, Benedetti Sabrina, Palumbo Orazio, Rendina Michelina, D'Agruma Leonardo, Falsini Benedetto, Wang Xinjing, Bertelli Matteo
1 MAGI Non-Profit Human Medical Genetics Institute , Rovereto, Trento, Italy .
2 Department of Medical and Surgical Sciences (DIMEC), University of Bologna , Bologna, Italy .
Genet Test Mol Biomarkers. 2017 Feb;21(2):116-121. doi: 10.1089/gtmb.2016.0257. Epub 2016 Dec 20.
X-linked juvenile retinoschisis (XLRS) is a severe ocular disorder that can evolve to blindness. More than 200 different disease-causing mutations have been reported in the RS1 gene and approximately 10% of these are deletions. Since transmission is X-linked, males are always affected and females are usually carriers. The identification of female carriers is always important and poses a technical challenge. Therefore, we sought to develop a multiplex ligation dependent probe amplification (MLPA)-based method to identify deletions or duplications in this gene. We then used our assay to study a large XLRS family.
We designed six probes specific for each RS1 exon and then optimized and validated our method using control samples with known gene deletions. In the XLRS family, RS1 gene copy number variation was assessed by "home-made" MLPA analysis and by single nucleotide polymorphism (SNP) array analysis using the CytoScan HD Array. Direct sequencing was used for deletion breakpoint mapping.
Our assay detected all deletions in control samples. All affected males of the family were positive for a deletion of exon 2 of the RS1 gene (RS1:NM_000330:c.53-?_78+?del). Carrier females were also identified.
Our method is easily replicated, reliable, and inexpensive and allows female carriers to be detected. This is the first report of deep characterization of a whole exon deletion in the RS1 gene.
X连锁青少年视网膜劈裂症(XLRS)是一种严重的眼部疾病,可发展为失明。RS1基因已报道200多种不同的致病突变,其中约10%为缺失突变。由于其遗传方式为X连锁,男性总是患病,女性通常为携带者。女性携带者的鉴定一直很重要且具有技术挑战性。因此,我们试图开发一种基于多重连接依赖探针扩增(MLPA)的方法来鉴定该基因的缺失或重复。然后我们用我们的检测方法研究了一个大型XLRS家系。
我们针对每个RS1外显子设计了六个探针,然后使用已知基因缺失的对照样本对我们的方法进行优化和验证。在XLRS家系中,通过“自制”MLPA分析和使用CytoScan HD芯片的单核苷酸多态性(SNP)芯片分析评估RS1基因拷贝数变异。直接测序用于缺失断点定位。
我们的检测方法检测到了对照样本中的所有缺失。该家系所有患病男性RS1基因外显子2缺失(RS1:NM_000330:c.53-?_78+?del)呈阳性。携带者女性也被鉴定出来。
我们的方法易于重复、可靠且成本低廉,能够检测出女性携带者。这是关于RS1基因全外显子缺失深入特征分析的首次报道。