A Novel De Novo Missense Variant in Netrin-1 (NTN1) Associated With Chorioretinal Coloboma, Sensorineural Hearing Loss and Polydactyly.

IF 2.9 3区 医学 Q2 GENETICS & HEREDITY
Maria Toms, Cara Heppell, Nicholas Owen, Samantha Malka, Mariya Moosajee
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引用次数: 0

Abstract

Microphthalmia, anophthalmia and coloboma (MAC) comprise a highly heterogeneous spectrum of congenital ocular malformations with an estimated incidence of 1 in 5000 to 1 in 30 000 live births. Although there is likely to be a genetic component in the majority of cases, many remain without a molecular diagnosis. Netrin-1 was previously identified as a mediator of optic fissure closure from transcriptome analyses of chick and zebrafish and was shown to cause ocular coloboma when knocked out in both mouse and zebrafish. Here, we report the first patient with chorioretinal coloboma and microphthalmia harbouring a novel heterozygous likely pathogenic NTN1 missense variant, c.1483T>A p.(Tyr495Asn), validating a conserved gene function in ocular development. In addition, the patient displayed bilateral sensorineural hearing loss which was investigated by examining the sensory hair cells of ntn1a morphant zebrafish, suggesting a role for netrin-1 in hair cell development.

Netrin-1 (NTN1)新发错义变异与脉络膜视网膜缺损、感音神经性听力损失和多指畸形相关。
小眼症、眼无和结肠瘤(MAC)是一种高度异质性的先天性眼部畸形,估计发病率为每5000至每3万活产儿中有1例。虽然在大多数病例中可能存在遗传因素,但许多病例仍未进行分子诊断。Netrin-1先前在鸡和斑马鱼的转录组分析中被确定为视裂隙关闭的介质,并且在小鼠和斑马鱼中被证明当敲除时导致眼结肠瘤。在这里,我们报告了第一个携带一种新的杂合的可能致病性NTN1错义变异的患者,c.1483T> a p.(Tyr495Asn),证实了一种保守的基因在眼部发育中的功能。此外,患者表现为双侧感音神经性听力损失,通过检查ntn1a变形斑马鱼的感觉毛细胞来研究,提示netrin-1在毛细胞发育中的作用。
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来源期刊
Clinical Genetics
Clinical Genetics 医学-遗传学
CiteScore
6.50
自引率
0.00%
发文量
175
审稿时长
3-8 weeks
期刊介绍: Clinical Genetics links research to the clinic, translating advances in our understanding of the molecular basis of genetic disease for the practising clinical geneticist. The journal publishes high quality research papers, short reports, reviews and mini-reviews that connect medical genetics research with clinical practice. Topics of particular interest are: • Linking genetic variations to disease • Genome rearrangements and disease • Epigenetics and disease • The translation of genotype to phenotype • Genetics of complex disease • Management/intervention of genetic diseases • Novel therapies for genetic diseases • Developmental biology, as it relates to clinical genetics • Social science research on the psychological and behavioural aspects of living with or being at risk of genetic disease
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