Kuechler A, Hentschel J, Kurth I, Stephan B, Prott E-C, Schweiger B, Schuster A, Wieczorek D, Lüdecke H-J
Institut für Humangenetik, Bochum-Wattenscheid, Germany.
Mol Syndromol. 2012 Nov;3(5):223-9. doi: 10.1159/000343746. Epub 2012 Oct 19.
Amelogenesis imperfecta (AI) is a clinically and genetically heterogeneous group of inherited defects of enamel formation. In isolated AI (no additional segregating features), mutations in at least 7 genes are known so far, causing dominant, recessive or X-linked AI and allowing the identification of the molecular etiology in 40-50% of affected families. We report on 2 siblings (an 11-year-old female and a 7-year-old male) born to consanguineous Turkish parents, with AI and mild, proportionate short stature. Both parents have normal teeth, but mother, maternal grandmother and great-grandfather are/were also of short stature. A spine X-ray performed in the girl excluded brachyolmia. Affymetrix GenomeWide SNP6.0 Array analysis identified no pathogenic copy number changes, but showed sharing of large homozygous regions, including chromosome band 15q21.3 containing the WDR72 gene. WDR72 sequence analysis in both siblings revealed homozygosity for a novel stop mutation in exon 10 (c.997A>T, p.Lys333X) explaining the AI phenotype. Mutations in WDR72 are a very rare cause of autosomal-recessive hypomaturation type of isolated AI. The mutation described in our patients specifies the diagnosis AI IIA3 and represents only the sixth WDR72 mutation reported so far. The WDR72 protein is critical for dental enamel formation, but its exact function is still unknown.
釉质发育不全(AI)是一组临床上和遗传上异质性的遗传性釉质形成缺陷。在孤立性AI(无其他分离特征)中,目前已知至少7个基因发生突变,导致显性、隐性或X连锁AI,并能在40%-50%的受累家庭中确定分子病因。我们报告了一对同胞(一名11岁女性和一名7岁男性),他们的父母是近亲结婚的土耳其人,患有AI且身材轻度匀称矮小。父母牙齿正常,但母亲、外祖母和曾祖父身材也矮小。对女孩进行的脊柱X线检查排除了短胸症。Affymetrix GenomeWide SNP6.0阵列分析未发现致病性拷贝数变化,但显示存在大片纯合区域,包括含有WDR72基因的15q21.3染色体带。对这对同胞进行的WDR72序列分析显示,外显子10存在一个新的终止突变(c.997A>T,p.Lys333X)纯合,解释了AI表型。WDR72突变是孤立性AI常染色体隐性低成熟型的非常罕见病因。我们患者中描述的突变明确了AI IIA3的诊断,并且是迄今为止报道的第六个WDR72突变。WDR72蛋白对牙釉质形成至关重要,但其确切功能仍不清楚。