El-Sayed Walid, Parry David A, Shore Roger C, Ahmed Mushtaq, Jafri Hussain, Rashid Yasmin, Al-Bahlani Suhaila, Al Harasi Sharifa, Kirkham Jennifer, Inglehearn Chris F, Mighell Alan J
Leeds Institute of Molecular Medicine, St James's University Hospital, University of Leeds, LS9 7TF Leeds, UK.
Am J Hum Genet. 2009 Nov;85(5):699-705. doi: 10.1016/j.ajhg.2009.09.014. Epub 2009 Oct 22.
Healthy dental enamel is the hardest and most highly mineralized human tissue. Though acellular, nonvital, and without capacity for turnover or repair, it can nevertheless last a lifetime. Amelogenesis imperfecta (AI) is a collective term for failure of normal enamel development, covering diverse clinical phenotypes that typically show Mendelian inheritance patterns. One subset, known as hypomaturation AI, is characterised by near-normal volumes of organic enamel matrix but with weak, creamy-brown opaque enamel that fails prematurely after tooth eruption. Mutations in genes critical to enamel matrix formation have been documented, but current understanding of other key events in enamel biomineralization is limited. We investigated autosomal-recessive hypomaturation AI in a consanguineous Pakistani family. A whole-genome SNP autozygosity screen identified a locus on chromosome 15q21.3. Sequencing candidate genes revealed a point mutation in the poorly characterized WDR72 gene. Screening of WDR72 in a panel of nine additional hypomaturation AI families revealed the same mutation in a second, apparently unrelated, Pakistani family and two further nonsense mutations in Omani families. Immunohistochemistry confirmed intracellular localization in maturation-stage ameloblasts. WDR72 function is unknown, but as a putative beta propeller is expected to be a scaffold for protein-protein interactions. The nearest homolog, WDR7, is involved in vesicle mobilization and Ca2+-dependent exocytosis at synapses. Vesicle trafficking is important in maturation-stage ameloblasts with respect to secretion into immature enamel and removal of cleaved enamel matrix proteins via endocytosis. This raises the intriguing possibility that WDR72 is critical to ameloblast vesicle turnover during enamel maturation.
健康的牙釉质是人体最坚硬、矿化程度最高的组织。尽管它无细胞结构、没有生命活力且无法更新或修复,但仍能伴随一生。牙釉质发育不全(AI)是正常牙釉质发育失败的统称,涵盖多种临床表型,通常呈现孟德尔遗传模式。其中一个亚类,即低成熟型AI,其特征是有机牙釉质基质体积接近正常,但牙釉质脆弱、呈乳黄色不透明,在牙齿萌出后过早损坏。已记录到牙釉质基质形成关键基因的突变,但目前对牙釉质生物矿化中其他关键事件的了解有限。我们对一个巴基斯坦近亲家庭中的常染色体隐性低成熟型AI进行了研究。全基因组单核苷酸多态性纯合性筛查确定了15号染色体q21.3上的一个位点。对候选基因进行测序后,在特征不明的WDR72基因中发现了一个点突变。在另外9个低成熟型AI家庭中对WDR72进行筛查,结果在另一个明显无亲缘关系的巴基斯坦家庭中发现了相同突变,在阿曼家庭中发现了另外两个无义突变。免疫组织化学证实其在成熟阶段成釉细胞内定位。WDR72的功能尚不清楚,但作为一种假定的β螺旋桨,预计它是蛋白质 - 蛋白质相互作用的支架。与其最接近的同源物WDR7参与突触处的囊泡转运和Ca2 + 依赖性胞吐作用。在成熟阶段的成釉细胞中,囊泡运输对于向未成熟牙釉质分泌以及通过内吞作用清除切割后的牙釉质基质蛋白很重要。这就引发了一个有趣的可能性,即WDR72在牙釉质成熟过程中对成釉细胞囊泡更新至关重要。