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在一个患有指甲-髌骨综合征的家族中,影响LMX1B基因LIM-A结构域的新型错义突变。

Novel missense mutation affecting the LIM-A domain of LMX1B in a family with Nail-Patella syndrome.

作者信息

Claverie-Martin Felix, Trindade Amelia, Garcia-Gonzalez Noriela C, Callejon Alicia Callejon

机构信息

Unidad de Investigacion, Hospital Nuestra Señora de Candelaria, Santa Cruz de Tenerife, Spain.

Servicio de Rehabilitación, Hospital Nuestra Señora de Candelaria, Santa Cruz de Tenerife, Spain.

出版信息

Intractable Rare Dis Res. 2019 Feb;8(1):14-19. doi: 10.5582/irdr.2018.01131.

Abstract

Nail-patella syndrome (NPS) is a rare autosomal dominant disease characterized by developmental defects of dorsal limb structures, the kidney, and the eye, that manifest as dysplastic nails, hypoplastic or absent patella, elbow dysplasia, iliac horns, glomerulopathy, and adult-onset glaucoma, respectively. This disorder is inherited in an autosomal dominant mode and is caused by heterozygous loss-of-function mutations in the gene, which encodes the LIM homeodomain transcription factor LMX1B. In this study, we report the clinical findings of a Spanish family, from the Canary Islands, with three affected members who displayed varying phenotypes. DNA sequence analysis identified a novel heterozygous missense mutation in , c.305A>G, p.(Y102C), that segregated with the disease. The tyrosine residue affected by the mutation is highly conserved in evolution, and is located in the LIM-A domain, next to one of the cysteine residues involved in zinc binding, suggesting that p.(Y102C) affects LMX1B function by disturbing its interactions with other proteins. Our results expand the mutation spectrum of and provide insight into the molecular mechanisms of NPS pathology.

摘要

指甲-髌骨综合征(NPS)是一种罕见的常染色体显性疾病,其特征为肢体背侧结构、肾脏和眼睛的发育缺陷,分别表现为指甲发育异常、髌骨发育不全或缺失、肘部发育异常、髂骨角、肾小球病和成人型青光眼。这种疾病以常染色体显性模式遗传,由编码LIM同源域转录因子LMX1B的基因中的杂合功能丧失突变引起。在本研究中,我们报告了一个来自加那利群岛的西班牙家族的临床发现,该家族中有三名受影响成员表现出不同的表型。DNA序列分析在该基因中鉴定出一个新的杂合错义突变,即c.305A>G,p.(Y102C),该突变与疾病共分离。受该突变影响的酪氨酸残基在进化过程中高度保守,位于LIM-A结构域,紧邻参与锌结合的半胱氨酸残基之一,这表明p.(Y102C)通过干扰其与其他蛋白质的相互作用来影响LMX1B的功能。我们的结果扩展了该基因的突变谱,并为指甲-髌骨综合征病理的分子机制提供了见解。

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