Parmeggiani Francesco, Barbaro Vanessa, Migliorati Angelo, Raffa Paolo, Nespeca Patrizia, De Nadai Katia, Del Vecchio Claudia, Palù Giorgio, Parolin Cristina, Di Iorio Enzo
Department of Biomedical and Specialty Surgical Sciences, University of Ferrara, Ferrara - Italy.
Veneto Eye Bank Foundation, Mestre (Venice) - Italy.
Eur J Ophthalmol. 2017 Mar 10;27(2):240-248. doi: 10.5301/ejo.5000879. Epub 2016 Oct 21.
To identify novel mutations in the retinitis pigmentosa GTPase regulator (RPGR) gene and retinitis pigmentosa 2 (RP2) gene underlying X-linked retinitis pigmentosa (XLRP) and assess genotype-phenotype correlations.
The patient cohort, consisting of 13 individuals from 3 unrelated XLRP families, underwent comprehensive ophthalmologic examination. The open reading frames of RPGR and RP2 were analyzed with Sanger sequencing in each patient. The identified genetic variants were defined as mutations or polymorphisms on the basis of their pathological effect.
We found 3 genetic variants: a novel mutation c.1591G>T in exon 14 and a novel polymorphism c.1105C>T in exon 10, resulting in p.Glu531* and p.Arg369Cys of RPGR gene, respectively, and one already known mutation c.413A>G in exon 2, resulting in a p.Glu138Gly of RP2 gene. Considering our XLRP probands, RPGR-related phenotypic damages were similar and less severe than those of the patient with the RP2 mutation. On the other hand, the female carriers of XLRP variants showed different RPGR-related consequences, ranging from rods hypofunctionality in c.1591G>T nonsense heterozygosity to no retinal changes in c.1105C>T polymorphic heterozygosity.
These findings broaden the spectrum of RPGR mutations and phenotypic variability of the disease, which will be useful for genetic consultation and diagnosis in the future.
鉴定X连锁视网膜色素变性(XLRP)潜在的视网膜色素变性GTP酶调节蛋白(RPGR)基因和视网膜色素变性2(RP2)基因中的新突变,并评估基因型与表型的相关性。
对来自3个不相关XLRP家系的13名患者进行了全面的眼科检查。采用Sanger测序法分析每位患者RPGR和RP2的开放阅读框。根据所鉴定遗传变异的病理效应将其定义为突变或多态性。
我们发现了3个遗传变异:外显子14中的一个新突变c.1591G>T,以及外显子10中的一个新多态性c.1105C>T,分别导致RPGR基因的p.Glu531*和p.Arg369Cys,还有一个外显子2中已知的突变c.413A>G,导致RP2基因的p.Glu138Gly。就我们的XLRP先证者而言,与RPGR相关的表型损害相似,但比携带RP2突变的患者轻。另一方面,XLRP变异的女性携带者表现出不同的与RPGR相关的后果,从c.1591G>T无义杂合子中的视杆细胞功能减退到c.1105C>T多态性杂合子中的无视网膜变化。
这些发现拓宽了RPGR突变谱和疾病的表型变异性,这将有助于未来的遗传咨询和诊断。