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C21orf2在伴有黄斑部葡萄肿的隐性早发性视网膜营养不良中发生突变,编码一种定位于光感受器初级纤毛的蛋白质。

C21orf2 is mutated in recessive early-onset retinal dystrophy with macular staphyloma and encodes a protein that localises to the photoreceptor primary cilium.

作者信息

Khan Arif O, Eisenberger Tobias, Nagel-Wolfrum Kerstin, Wolfrum Uwe, Bolz Hanno J

机构信息

Division of Pediatric Ophthalmology, King Khaled Eye Specialist Hospital, Riyadh, Saudi Arabia.

Bioscientia Center for Human Genetics, Ingelheim, Germany.

出版信息

Br J Ophthalmol. 2015 Dec;99(12):1725-31. doi: 10.1136/bjophthalmol-2015-307277. Epub 2015 Aug 20.

Abstract

BACKGROUND/AIM: We have noted a phenotype of early-onset retinal dystrophy with macular staphyloma but without high myopia. The aim of this study is to report the underlying genetic mutations and the subcellular localisation of the gene product in the retina.

METHODS

Retrospective case series (2012-2015); immunohistochemical analyses of mammalian retina for in situ protein localisation.

RESULTS

All three probands were first noted to have decreased vision at 3-6 years old which worsened over time. At ages 39, 37 and 12 years old, all had similar retinal findings: dystrophic changes (retinal pigment epithelium mottling, vessel narrowing), macular staphyloma (despite only mild myopia or high hyperopia), and non-recordable electroretinography. All harboured homozygous mutations in C21orf2, a gene recently suggested to be associated with retinal dystrophy but of unknown function. Two had a frameshift deletion c.436_466del (p.Glu146Serfs*6). The third had a missense mutation affecting a highly conserved residue (p.Cys61Tyr) and was short (below the 3rd percentile) and obese (50th percentile for weight despite short stature). Immunohistochemical studies in human, pig and mouse retinas localised C21orf2 protein to the ciliary structures of the photoreceptor cell (the daughter basal body, the centriole adjacent to the basal body, and the connecting cilium).

CONCLUSIONS

This retinal dystrophy phenotype is caused by recessive mutations in C21orf2 and can be considered a retinal ciliopathy as C21orf2 encodes a protein that localises to photoreceptor ciliary structures. The short stature and obesity noted in the youngest girl suggest that for some patients biallelic C21orf2 mutations may result in syndromic ciliopathy.

摘要

背景/目的:我们注意到一种早发性视网膜营养不良的表型,伴有黄斑部葡萄肿,但无高度近视。本研究的目的是报告潜在的基因突变以及该基因产物在视网膜中的亚细胞定位。

方法

回顾性病例系列研究(2012 - 2015年);对哺乳动物视网膜进行免疫组织化学分析以进行原位蛋白定位。

结果

所有三名先证者最初均在3 - 6岁时被发现视力下降,且随时间推移病情加重。在39岁、37岁和12岁时,他们都有相似的视网膜表现:营养不良性改变(视网膜色素上皮斑驳、血管变窄)、黄斑部葡萄肿(尽管只有轻度近视或高度远视)以及视网膜电图不可记录。所有患者在C21orf2基因中均存在纯合突变,该基因最近被认为与视网膜营养不良有关,但功能未知。其中两名患者有移码缺失c.436_466del(p.Glu146Serfs*6)。第三名患者有一个错义突变,影响一个高度保守的残基(p.Cys61Tyr),且身材矮小(低于第3百分位数)且肥胖(尽管身材矮小但体重处于第50百分位数)。在人、猪和小鼠视网膜中的免疫组织化学研究将C21orf2蛋白定位于光感受器细胞的纤毛结构(子代基体、与基体相邻的中心粒以及连接纤毛)。

结论

这种视网膜营养不良表型是由C21orf2基因的隐性突变引起的,由于C21orf2编码一种定位于光感受器纤毛结构的蛋白,因此可被视为一种视网膜纤毛病。最年轻女孩出现的身材矮小和肥胖表明,对于一些患者,双等位基因C21orf2突变可能导致综合征性纤毛病。

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