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RS1基因中的一种新型缺失突变导致一个中国家系出现X连锁青少年视网膜劈裂症。

A novel deletion mutation in RS1 gene caused X-linked juvenile retinoschisis in a Chinese family.

作者信息

Huang Y, Mei L, Gui B, Su W, Liang D, Wu L, Pan Q

机构信息

State Key Laboratory of Medical Genetics, Xiangya Hospital, Central South University, Changsha, China.

出版信息

Eye (Lond). 2014 Nov;28(11):1364-9. doi: 10.1038/eye.2014.196. Epub 2014 Aug 29.

Abstract

PURPOSE

X-linked juvenile retinoschisis (XLRS), a leading cause of juvenile macular degeneration, is characterized by a spoke-wheel pattern in the macular region of the retina and splitting of the neurosensory retina. This study aimed to identify the underlying genetic defect in a Chinese family with XLRS.

METHODS

The proband underwent complete ophthalmic examinations, including fundus examination, fundus autofluorescence, and optical coherence tomography. DNA extracted from proband and his younger brother was screened for mutations in RS1 gene. The detected RS1 mutation was tested in all available family members and 200 healthy controls.

RESULTS

Reduced visual acuity, spoke-wheel pattern at the fovea, and split retina were observed in the proband. A novel frameshift mutation c.206-207delTG in the RS1 gene, leading to a truncated protein (p.L69fs16X), was identified in the proband and his younger brother. This mutation was not found in any unaffected member or in the healthy controls. The mother of the proband was hemizygous for this mutant allele.

CONCLUSIONS

We identified a novel causative mutation of RS1 in a Chinese family with XLRS. This finding expands the mutation spectrum of RS1 and provides evidence for a phenotype-genotype study in XLRS.

摘要

目的

X连锁青少年视网膜劈裂症(XLRS)是青少年黄斑变性的主要病因,其特征是视网膜黄斑区呈辐轮状图案以及神经感觉视网膜劈裂。本研究旨在确定一个患有XLRS的中国家系的潜在基因缺陷。

方法

先证者接受了全面的眼科检查,包括眼底检查、眼底自发荧光和光学相干断层扫描。对先证者及其弟弟提取的DNA进行RS1基因突变筛查。在所有可获得的家庭成员和200名健康对照中检测所发现的RS1突变。

结果

先证者视力下降,中央凹出现辐轮状图案,视网膜劈裂。在先证者及其弟弟中鉴定出RS1基因一个新的移码突变c.206-207delTG,导致截短蛋白(p.L69fs16X)。在任何未受影响的成员或健康对照中均未发现该突变。先证者的母亲为该突变等位基因的半合子。

结论

我们在一个患有XLRS的中国家系中鉴定出RS1基因一个新的致病突变。这一发现扩展了RS1的突变谱,并为XLRS的表型-基因型研究提供了证据。

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本文引用的文献

1
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Hum Mol Genet. 2010 Apr 1;19(7):1302-13. doi: 10.1093/hmg/ddq006. Epub 2010 Jan 8.

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