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G1961E mutant allele in the Stargardt disease gene ABCA4 causes bull’s eye maculopathy

机译:Stargardt病基因ABCA4中的G1961E突变等位基因导致牛眼黄斑病变

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摘要

The aim of this study was to characterize the pathological and functional consequences of the G1961E mutant allele in the Stargardt disease gene ABCA4. Data from 15 patients were retrospectively reviewed and all the patients had at least one G1961E mutation. Comprehensive ophthalmic examination, full-field and pattern electroretinograms, and fundus autofluorescence (FAF) imaging were performed on all patients. Microperimetry, spectral-domain optical coherence tomography (OCT), and fluorescein angiography were performed in selected cases. Genetic screening was performed using the ABCR400 micro-array that currently detects 496 disctinct ABCA4 variants. All patients had normal full-field scotopic and photopic electroretinograms (ERGs) and abnormal pattern electroretinograms (PERGs) performed on both eyes, and all the fundi had bull’s eye maculopathy without retinal flecks on FAF. On OCT, one patient had disorganization of photoreceptor outer segment, two had outer nuclear layer (ONL) thinning likely due to photoreceptor atrophy proximal to the foveal center, and three had additional retinal pigment epithelium (RPE) atrophy. On microperimetry, six patients had eccentric superior fixation and amongst this group, five had an absolute scotoma in the foveal area. DNA analysis revealed that three patients were homozygous G1961E/G1961E and the rest were compound heterozygotes for G1961E and other ABCA4 mutations. The G1961E allele in either homozygosity or heterozygosity is associated with anatomical and functional pathologies limited to the parafoveal region and a trend to delayed onset of symptoms, relative to other manifestations of ABCA4 mutations. Our observations support the hypothesis that the G1961E allele contributes to localized macular changes rather than generalized retinal dysfunction, and is a cause of bull’s eye maculopathy in either the homozygosity or heterozygosity state. In addition, genetic testing provides precise diagnosis of the underlying maculopathy, and current non-invasive imaging techniques could be used to detect photoreceptor damage at the earliest clinical onset of the disease.
机译:这项研究的目的是表征Stargardt病基因ABCA4中G1961E突变等位基因的病理和功能后果。回顾性回顾了15例患者的数据,所有患者均至少有一个G1961E突变。对所有患者进行全面的眼科检查,全视野和模式视网膜电图以及眼底自发荧光(FAF)成像。在选定的病例中进行了微视野检查,光谱域光学相干断层扫描(OCT)和荧光素血管造影。使用目前检测496个不同ABCA4变异体的ABCR400微阵列进行遗传筛选。所有患者的两只眼睛均具有正常的全视野暗视和视网膜电图(ERG)以及异常模式视网膜电图(PERG),并且所有眼底均患有牛眼黄斑病,FAF上无视网膜斑点。在OCT上,一名患者的感光器外部节段紊乱,两名患者可能由于中央凹中心附近的感光器萎缩导致外核层(ONL)变薄,而三名患者又出现了视网膜色素上皮(RPE)萎缩。在微视野检查中,有6例患者进行了偏心上固定,其中5例在中央凹区出现了绝对的暗点。 DNA分析显示,三名患者为纯合子G1961E / G1961E,其余为G1961E和其他ABCA4突变的复合杂合子。相对于ABCA4突变的其他表现形式,纯合性或杂合性的G1961E等位基因与局灶性区域相关的解剖和功能病理以及症状发作延迟的趋势。我们的观察结果支持以下假设:G1961E等位基因可导致局部黄斑改变而不是普遍的视网膜功能障碍,并且是纯合或杂合状态下牛眼黄斑病变的原因。此外,基因测试可对潜在的黄斑病提供精确的诊断,并且当前的非侵入性成像技术可用于在疾病最早的临床发作时检测光感受器损伤。

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