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对52例无眼/小眼畸形患者眼部发育基因的遗传学研究。

Genetic investigation of ocular developmental genes in 52 patients with anophthalmia/microphthalmia.

作者信息

Vidya Nair Gopinathan, Rajkumar Sankaranarayanan, Vasavada Abhay R

机构信息

a Department of Molecular Genetics & Biochemistry , Iladevi Cataract & IOL Research Centre , Ahmedabad , India.

c Research scholar , Manipal University , Karnataka.

出版信息

Ophthalmic Genet. 2018 Jun;39(3):344-352. doi: 10.1080/13816810.2018.1436184. Epub 2018 Feb 20.

Abstract

BACKGROUND

Mutation in eye developmental genes has been reported to cause anophthalmia and microphthalmia. However, in India, especially in the Western Indian population, such reports are scarce. Hence, the present study aims to investigate mutations in 15 ocular developmental genes in patients with anophthalmia and microphthalmia in the western region of India.

MATERIALS AND METHODS

Genomic DNA was isolated from the blood of 52 individuals affected with microphthalmia and anophthalmia, and 50 healthy normal controls. Polymerase chain reaction (PCR) was carried out for 15 genes including BMP4, CRYBA4, FOXE3, GDF6, GJA3, GJA8, MITF, OTX2, PAX6, PITX3, RAX, SIX3, SIX6, SOX2, and VSX2 using gene-specific primers spanning the exon-intron boundaries and part of a promoter region. The amplified PCR products were purified and then subjected to Sanger's bi-directional sequencing. Nucleotide variations were examined using a basic local alignment search tool (BLAST).

RESULTS

Bi-directional sequencing identified 8 novel and 14 known variations. Out of this, the variations GJA3-c.92T>A; p.Ile31Asn, SOX2-c.542C>A; p.Pro181Gln and SOX2-c.541_542delinsGA; p.Pro181Glu were found to be deleterious by in silico analysis. The GJA3-p.Ile31Asn mutation was identified in a patient with bilateral microphthalmia, microcornea, and membranous cataract. The SOX2-p.Pro181Gln and SOX2-p.Pro181Glu mutations were identified in patients with isolated bilateral microphthalmia and microphthalmia with microcornea, respectively. A novel nondeleterious missense variation was identified in the GJA8 gene in a patient with anophthalmia.

CONCLUSION

These results support the crucial role of GJA3 and SOX2 in eye development and indicate a detailed functional study to understand the molecular mechanisms underlying the disease pathology.

摘要

背景

据报道,眼睛发育基因的突变会导致无眼症和小眼症。然而,在印度,尤其是西部印度人群中,此类报道较为稀少。因此,本研究旨在调查印度西部地区无眼症和小眼症患者15个眼部发育基因的突变情况。

材料与方法

从52例小眼症和无眼症患者以及50例健康正常对照者的血液中提取基因组DNA。使用跨越外显子 - 内含子边界和部分启动子区域的基因特异性引物,对包括BMP4、CRYBA4、FOXE3、GDF6、GJA3、GJA8、MITF、OTX2、PAX6、PITX3、RAX、SIX3、SIX6、SOX2和VSX2在内的15个基因进行聚合酶链反应(PCR)。将扩增的PCR产物纯化,然后进行桑格双向测序。使用基本局部比对搜索工具(BLAST)检查核苷酸变异。

结果

双向测序鉴定出8个新变异和14个已知变异。其中,通过计算机分析发现变异GJA3 - c.92T>A;p.Ile31Asn、SOX2 - c.542C>A;p.Pro181Gln和SOX2 - c.541_542delinsGA;p.Pro181Glu具有有害性。在一名患有双侧小眼症、小角膜和膜性白内障的患者中鉴定出GJA3 - p.Ile31Asn突变。SOX2 - p.Pro181Gln和SOX2 - p.Pro181Glu突变分别在患有孤立性双侧小眼症和伴有小角膜的小眼症患者中鉴定出。在一名无眼症患者的GJA8基因中鉴定出一个新的无害错义变异。

结论

这些结果支持GJA3和SOX2在眼睛发育中的关键作用,并表明需要进行详细的功能研究以了解疾病病理背后的分子机制。

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