首页> 外文期刊>The American Journal of Human Genetics >Mutations in CNNM4 cause Jalili syndrome, consisting of autosomal-recessive cone-rod dystrophy and amelogenesis imperfecta.
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Mutations in CNNM4 cause Jalili syndrome, consisting of autosomal-recessive cone-rod dystrophy and amelogenesis imperfecta.

机译:CNNM4中的突变会导致贾利利综合症(Jalili syndrome),包括常染色体隐性隐锥状营养不良和牙釉质发育不全。

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The combination of recessively inherited cone-rod dystrophy (CRD) and amelogenesis imperfecta (AI) was first reported by Jalili and Smith in 1988 in a family subsequently linked to a locus on chromosome 2q11, and it has since been reported in a second small family. We have identified five further ethnically diverse families cosegregating CRD and AI. Phenotypic characterization of teeth and visual function in the published and new families reveals a consistent syndrome in all seven families, and all link or are consistent with linkage to 2q11, confirming the existence of a genetically homogenous condition that we now propose to call Jalili syndrome. Using a positional-candidate approach, we have identified mutations in the CNNM4 gene, encoding a putative metal transporter, accounting for the condition in all seven families. Nine mutations are described in all, three missense, three terminations, two large deletions, and a single base insertion. We confirmed expression of Cnnm4 in the neural retina and in ameloblasts in the developing tooth, suggesting a hitherto unknown connection between tooth biomineralization and retinal function. The identification of CNNM4 as the causative gene for Jalili syndrome, characterized by syndromic CRD with AI, has the potential to provide new insights into the roles of metal transport in visual function and biomineralization.
机译:隐性遗传性圆锥杆营养不良(CRD)和牙釉质发育不全(AI)的组合是由Jalili和Smith在1988年首次报道的,该家族随后与2q11号染色体上的基因座相关,并且此后在第二个小家族中已有报道。 。我们已经确定了五个另外的种族多样化的家庭,将CRD和AI进行了分离。在已发表的和新的家族中,牙齿和视觉功能的表型特征揭示了所有七个家族中的一致综合征,并且所有家族都与2q11关联或一致,从而证实存在遗传上均一的状况,我们现在建议将其称为Jalili综合征。使用位置候选方法,我们已经鉴定了编码假定的金属转运蛋白的CNNM4基因突变,解释了所有七个家族的情况。共有9个突变,三个错义,三个终止,两个大缺失和一个碱基插入。我们证实了Cnnm4在发育中的牙齿的神经视网膜和成釉细胞中的表达,表明牙齿生物矿化与视网膜功能之间迄今未知的联系。将CNNM4鉴定为Jalili综合征的致病基因,其特征为具有AI的CRD综合征,可能为金属转运在视觉功能和生物矿化中的作用提供新的见解。

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