Department of Pediatric Dentistry & Dental Research Institute, School of Dentistry, Seoul National University, Seoul, Republic of Korea.
Department of Molecular Genetics & the Dental Research Institute, School of Dentistry, Seoul National University, Seoul, Republic of Korea.
Clin Genet. 2019 Mar;95(3):375-383. doi: 10.1111/cge.13487. Epub 2018 Dec 21.
Amelogenesis imperfecta (AI) is a collection of isolated (non-syndromic) inherited diseases affecting dental enamel formation or a clinical phenotype in syndromic conditions. We characterized three consanguineous AI families with generalized irregular hypoplastic enamel with rapid attrition that perfectly segregated with homozygous defects in a novel gene: RELT that is a member of the tumor necrosis factor receptor superfamily (TNFRSF). RNAscope in situ hybridization of wild-type mouse molars and incisors showed specific Relt mRNA expression by secretory stage ameloblasts and by odontoblasts. Relt mice generated by CRISPR/Cas9 exhibited incisor and molar enamel malformations. Relt enamel had a rough surface and underwent rapid attrition. Normally unmineralized spaces in the deep enamel near the dentino-enamel junction (DEJ) were as highly mineralized as the adjacent enamel, which likely altered the mechanical properties of the DEJ. Phylogenetic analyses showed the existence of selective pressure on RELT gene outside of tooth development, indicating that the human condition may be syndromic, which possibly explains the history of small stature and severe childhood infections in two of the probands. Knowing a TNFRSF member is critical during the secretory stage of enamel formation advances our understanding of amelogenesis and improves our ability to diagnose human conditions featuring enamel malformations.
釉质发育不全(AI)是一组孤立的(非综合征性)遗传性疾病,影响牙釉质的形成或综合征条件下的临床表型。我们对三个近亲婚配的 AI 家系进行了研究,这些家系的共同特征是釉质广泛不规则性、发育不全、快速磨损,且均与一种新型基因(RELT)的纯合缺陷完全分离,RELT 是肿瘤坏死因子受体超家族(TNFRSF)的成员。野生型小鼠磨牙和切牙的 RNAscope 原位杂交显示,Relt mRNA 由分泌期成釉细胞和成牙本质细胞特异性表达。CRISPR/Cas9 生成的 Relt 小鼠表现出切牙和磨牙釉质畸形。Relt 釉质表面粗糙,磨损迅速。牙本质釉质交界处(DEJ)深部未矿化的正常空间与相邻釉质一样高度矿化,这可能改变了 DEJ 的力学性能。系统发育分析表明,RELT 基因在牙齿发育之外存在选择压力,表明人类疾病可能是综合征性的,这可能解释了两个先证者的身材矮小和严重儿童感染的病史。在釉质形成的分泌期了解 TNFRSF 成员是至关重要的,这有助于我们深入了解釉质形成,并提高我们诊断具有釉质畸形的人类疾病的能力。