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首页> 外文期刊>Human Molecular Genetics >Retinal degeneration associated with RDH12 mutations results from decreased 11-cis retinal synthesis due to disruption of the visual cycle.
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Retinal degeneration associated with RDH12 mutations results from decreased 11-cis retinal synthesis due to disruption of the visual cycle.

机译:与RDH12突变相关的视网膜变性是由于视觉周期的破坏导致11-顺式视网膜合成减少所致。

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摘要

Retinoid dehydrogenases/reductases catalyze key oxidation-reduction reactions in the visual cycle that converts vitamin A to 11-cis retinal, the chromophore of the rod and cone photoreceptors. It has recently been shown that mutations in RDH12, encoding a retinol dehydrogenase, result in severe and early-onset autosomal recessive retinal dystrophy (arRD). In a cohort of 1011 individuals diagnosed with arRD, we have now identified 20 different disease-associated RDH12 mutations, of which 16 are novel, in a total of 22 individuals (2.2%). Haplotype analysis suggested a founder mutation for each of the three common mutations: p.L99I, p.T155I and c.806_810delCCCTG. Patients typically presented with early disease that affected the function of both rods and cones and progressed to legal blindness in early adulthood. Eleven of the missense variants identified in our study exhibited profound loss of catalytic activity when expressed in transiently transfected COS-7 cells and assayed for ability to convert all-trans retinal to all-trans retinol. Loss-of-function appeared to result from decreased protein stability, as expression levels were significantly reduced. For the p.T49M variant, differing activity profiles were associated with each of the alleles of the common p.R161Q RDH12 polymorphism, suggesting that genetic background may act as a modifier of mutation effect. A locus (LCA3) for Leber congenital amaurosis, a severe, early-onset form of arRD, maps close to RDH12 on chromosome 14q24. Haplotype analysis in the family in which LCA3 was mapped excluded RDH12 as the LCA3 gene and thus suggests the presence of a novel arRD gene in this region.
机译:类维生素A脱氢酶/还原酶催化视觉循环中的关键氧化还原反应,从而将维生素A转化为11-顺式视网膜(视杆和视锥感光体的生色团)。最近显示,编码视黄醇脱氢酶的RDH12中的突变会导致严重和早发的常染色体隐性视网膜营养不良(arRD)。现在,在1011名被诊断为arRD的个体中,我们已经鉴定出20种与疾病相关的RDH12突变,其中16种是新的,总共22个体(2.2%)。单倍型分析提示三个常见突变中的每一个都有一个创始人突变:p.L99I,p.T155I和c.806_810delCCCTG。通常表现为早期疾病的患者会影响视杆和视锥的功能,并在成年早期发展为法定失明。当我们在瞬时转染的COS-7细胞中表达并测定将全反式视网膜转化为全反式视黄醇的能力时,我们研究中发现的11个错义变体表现出极大的催化活性损失。由于表达水平显着降低,功能丧失似乎是由于蛋白质稳定性下降所致。对于p.T49M变体,不同的活性谱与常见的p.R161Q RDH12多态性的每个等位基因相关,这表明遗传背景可能是突变效应的调节剂。 Leber先天性黑ur病的一个基因座(LCA3),是一种严重的arRD早期发作形式,位于14q24号染色体上,靠近RDH12。在LCA3定位家族中的单倍型分析排除了RDH12作为LCA3基因,因此表明该区域存在新的arRD基因。

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