Kim Youn Jung, Lee Yejin, Zhang Hong, Seymen Figen, Koruyucu Mine, Bayrak Sule, Tuloglu Nuray, Simmer James P, Hu Jan C-C, Kim Jung-Wook
Department of Pediatric Dentistry & DRI, School of Dentistry, Seoul National University, Seoul 03080, Korea.
Department of Biologic and Materials Sciences & Prosthodontics, School of Dentistry, University of Michigan, Ann Arbor, MI 48109, USA.
J Pers Med. 2022 Jun 19;12(6):1002. doi: 10.3390/jpm12061002.
Hereditary dentin defects are conventionally classified into three types of dentinogenesis imperfecta (DGI) and two types of dentin dysplasia (DD). Mutations in the dentin sialophosphoprotein (DSPP) gene have been identified to cause DGI type II and III and DD type II; therefore, these are not three different conditions, but rather allelic disorders. In this study, we recruited three families with varying clinical phenotypes from DGI-III to DD-II and performed mutational analysis by candidate gene analysis or whole-exome sequencing. Three novel mutations including a silent mutation (NM_014208.3: c.52-2del, c.135+1G>C, and c.135G>A; p.(Gln45=)) were identified, all of which affected pre-mRNA splicing. Comparison of the splicing assay results revealed that the expression level of the DSPP exon 3 deletion transcript correlated with the severity of the dentin defects. This study did not only expand the mutational spectrum of DSPP gene, but also advanced our understanding of the molecular pathogenesis impacting the severity of hereditary dentin defects.
遗传性牙本质缺陷传统上分为三种牙本质发育不全(DGI)类型和两种牙本质发育异常(DD)类型。牙本质涎磷蛋白(DSPP)基因突变已被确定为导致II型和III型DGI以及II型DD的原因;因此,这些并非三种不同的病症,而是等位基因疾病。在本研究中,我们招募了三个临床表型各异的家系,从III型DGI到II型DD,并通过候选基因分析或全外显子组测序进行突变分析。我们鉴定出三个新的突变,包括一个沉默突变(NM_014208.3: c.52-2del、c.135+1G>C和c.135G>A;p.(Gln45=)),所有这些突变均影响前体mRNA剪接。剪接分析结果的比较显示,DSPP外显子3缺失转录本的表达水平与牙本质缺陷的严重程度相关。本研究不仅扩展了DSPP基因的突变谱,还增进了我们对影响遗传性牙本质缺陷严重程度的分子发病机制的理解。