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STRA6 突变在孤立性无眼畸形、小眼畸形和眼眶裂开中的首次意义:STRA6 表型的新维度。

First implication of STRA6 mutations in isolated anophthalmia, microphthalmia, and coloboma: a new dimension to the STRA6 phenotype.

机构信息

School of Medicine and Medical Science, University College Dublin, Belfield, Dublin, Ireland.

出版信息

Hum Mutat. 2011 Dec;32(12):1417-26. doi: 10.1002/humu.21590. Epub 2011 Sep 29.

Abstract

Microphthalmia, anophthalmia, and coloboma (MAC) are structural congenital eye malformations that cause a significant proportion of childhood visual impairments. Several disease genes have been identified but do not account for all MAC cases, suggesting that additional risk loci exist. We used single nucleotide polymorphism (SNP) homozygosity mapping (HM) and targeted next-generation sequencing to identify the causative mutation for autosomal recessive isolated colobomatous microanophthalmia (MCOPCB) in a consanguineous Irish Traveller family. We identified a double-nucleotide polymorphism (g.1157G>A and g.1156G>A; p.G304K) in STRA6 that was homozygous in all of the MCOPCB patients. The STRA6 p.G304K mutation was subsequently detected in additional MCOPCB patients, including one individual with Matthew-Wood syndrome (MWS; MCOPS9). STRA6 encodes a transmembrane receptor involved in vitamin A uptake, a process essential to eye development and growth. We have shown that the G304K mutant STRA6 protein is mislocalized and has severely reduced vitamin A uptake activity. Furthermore, we reproduced the MCOPCB phenotype in a zebrafish disease model by inhibiting retinoic acid (RA) synthesis, suggesting that diminished RA levels account for the eye malformations in STRA6 p.G304K patients. The current study demonstrates that STRA6 mutations can cause isolated eye malformations in addition to the congenital anomalies observed in MWS.

摘要

小眼症、无眼症和视网膜脉络膜缺损(MAC)是结构先天性眼部畸形,导致了相当一部分儿童视力障碍。已经确定了几个疾病基因,但它们并不能解释所有的 MAC 病例,这表明存在其他风险基因座。我们使用单核苷酸多态性(SNP)纯合性作图(HM)和靶向下一代测序,鉴定了一个爱尔兰旅行者家族中常染色体隐性孤立性视网膜脉络膜缺损性小眼症(MCOPCB)的致病突变。我们在 STRA6 中发现了一个双核苷酸多态性(g.1157G>A 和 g.1156G>A;p.G304K),在所有 MCOPCB 患者中均为纯合子。随后在其他 MCOPCB 患者中检测到 STRA6 p.G304K 突变,包括一名马修-伍德综合征(MWS;MCOPS9)患者。STRA6 编码一种参与维生素 A 摄取的跨膜受体,这是眼睛发育和生长所必需的过程。我们已经表明,G304K 突变 STRA6 蛋白定位错误,并且维生素 A 摄取活性严重降低。此外,我们通过抑制视黄酸(RA)合成在斑马鱼疾病模型中重现了 MCOPCB 表型,表明 RA 水平降低导致 STRA6 p.G304K 患者的眼部畸形。本研究表明,STRA6 突变除了在 MWS 中观察到的先天性异常外,还可导致孤立性眼部畸形。

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