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X 连锁型视网膜炎色素变性患者的新型 RPGR-ORF15 突变。

Novel RPGR-ORF15 mutations in X-linked retinitis pigmentosa patients.

机构信息

Department of Ophthalmology, The Eye & ENT Hospital of Fudan University, Shanghai 200031, China.

出版信息

Neurosci Lett. 2011 Aug 1;500(1):16-9. doi: 10.1016/j.neulet.2011.05.234. Epub 2011 Jun 12.

Abstract

X-linked retinitis pigmentosa (XLRP) is the most severe type of retinitis pigmentosa (RP), with patients consistently showing early onset and rapid deterioration. Obtaining a genetic diagnosis for a family with XLRP is important for counseling purposes. In this study, we aimed to identify disease-causing mutations in two unrelated XLRP families. Genetic analysis was performed on two unrelated XLRP families. Genomic DNA was extracted from peripheral blood or amniotic fluid samples. The coding regions and intron/exon boundaries of the Retinitis Pigmentosa GTPase Regulator (RPGR) and RP2 genes were amplified by PCR and then sequenced directly. A clinically unaffected pregnant female and the four month old fetus were found to have a hemizygous 2 base pair deletion (g.ORF15+484_485delAA) in the exon ORF15 of RPGR gene. In another XLRP family, a nonsense mutation (g.ORF15+810G>T) was identified. Neither mutation has been reported previously. Both are predicted to cause premature termination of the protein. In conclusion, we identified a micro-deletion through prenatal genetic diagnosis and another novel nonsense mutation in RPGR-ORF15. Identifying a disease-causing mutation facilitated early diagnosis and genetic counseling for the patients. Discovery of novel mutations also broadens knowledge of XLRP and the spectrum of its pathogenic genotypes.

摘要

X 连锁性视锥-视杆营养不良(XLRP)是视锥-视杆营养不良(RP)中最严重的类型,患者始终表现出早期发病和快速恶化。为了提供咨询目的,为 XLRP 家族获得遗传诊断非常重要。在这项研究中,我们旨在鉴定两个无关 XLRP 家族的致病突变。对两个无关的 XLRP 家族进行了遗传分析。从外周血或羊水样本中提取基因组 DNA。通过 PCR 扩增视锥-视杆营养不良 GTP 酶调节剂(RPGR)和 RP2 基因的编码区和内含子/外显子边界,然后直接测序。发现一名临床无症状的孕妇和四个月大的胎儿在 RPGR 基因的外显子 ORF15 中存在杂合的 2 个碱基缺失(g.ORF15+484_485delAA)。在另一个 XLRP 家族中,鉴定出无义突变(g.ORF15+810G>T)。这两种突变均未被报道过。两者均预测导致蛋白质过早终止。总之,我们通过产前遗传诊断鉴定出一个微缺失,以及 RPGR-ORF15 中的另一个新的无义突变。致病突变的鉴定促进了患者的早期诊断和遗传咨询。新突变的发现也拓宽了对 XLRP 及其致病基因型谱的认识。

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