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眼耳综合征表型的进一步描述:一个携带新型HMX1截短突变的新家族。

Further delineation of the oculoauricular syndrome phenotype: A new family with a novel truncating HMX1 mutation.

作者信息

Abdel-Salam Ghada M H, Abdel-Hamid Mohamed S, Mehrez Mennat I, Kamal Ahmad M, Taher Mohamed B, Afifi Hanan H

机构信息

a Clinical Genetics Department, Human Genetics and Genome Research Division , National Research Centre , Cairo , Egypt.

b Medical Molecular Department, Human Genetics and Genome Research Division , National Research Centre , Cairo , Egypt.

出版信息

Ophthalmic Genet. 2018 Apr;39(2):215-220. doi: 10.1080/13816810.2017.1401089. Epub 2017 Nov 15.

Abstract

Biallelic HMX1 mutations cause a very rare autosomal recessive genetic disorder termed as oculoauricular syndrome (OAS) because it is characterized only by the combination of eye and ear anomalies. We identified a new family bringing to three the total families reported with this disorder. Our proband presented with anteriorly protruded ears and malformed ear pinnae in association with microphthalmia, congenital cataract, microcornea, and iris and optic disc colobomata. Additionally, he had high and broad forehead with asymmetry giving a recognizable facial gestalt. Further, short left mandibular ramus and bifid cingulum in the boy and short right mandibular ramus in his father were observed. Mutation analysis revealed a novel homozygous nonsense mutation c.487G>T in the second exon of the HMX1 that predicted to introduce a premature stop codon at position 163 (p.E163*). Parents showed the heterozygous state of the detected mutation. Investigations in a process as complex as craniofacial development suggest that there are still additional, as yet unidentified, genes that play in orchestrate to determine the final phenotype.

摘要

双等位基因HMX1突变导致一种非常罕见的常染色体隐性遗传病,称为眼耳综合征(OAS),因为其仅以眼睛和耳朵异常的组合为特征。我们鉴定出一个新的家系,使报道的患有这种疾病的家系总数达到三个。我们的先证者表现为耳朵向前突出和耳廓畸形,同时伴有小眼症、先天性白内障、小角膜以及虹膜和视盘缺损。此外,他额头高且宽,不对称,呈现出一种可识别的面部形态。此外,观察到该男孩左下颌支短小且扣带沟分叉,其父亲右下颌支短小。突变分析显示,HMX1第二个外显子中存在一个新的纯合无义突变c.487G>T,预计会在第163位引入一个提前终止密码子(p.E163*)。父母表现出检测到的突变的杂合状态。在像颅面发育这样复杂的过程中进行的研究表明,仍有其他尚未确定的基因在协同作用以决定最终表型。

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