Wang Shih-Kai, Chan Hui-Chen, Rajderkar Sudha, Milkovich Rachel N, Uston Karen A, Kim Jung-Wook, Simmer James P, Hu Jan C-C
Department of Biologic and Materials Sciences, University of Michigan School of Dentistry, Ann Arbor, MI 48108, USA.
Eur J Oral Sci. 2011 Dec;119 Suppl 1(Suppl 1):158-67. doi: 10.1111/j.1600-0722.2011.00874.x.
Dentin sialophosphoprotein (DSPP) mutations cause dentin dysplasia type II (DD-II) and dentinogenesis imperfecta types II and III (DGI-II and DGI-III, respectively). We identified two kindreds with DGI-II who exhibited vertical bands of hypoplastic enamel. Both families had a previously reported DSPP mutation that segregated with the disease phenotype. Oral photographs and dental radiographs of four affected and one unaffected participant in one family and of the proband in the second family were used to document the dental phenotypes. We aligned the 33 unique allelic DSPP sequences showing variable patterns of insertions and deletions (indels), generated a merged dentin phosphoprotein (DPP) sequence that includes sequences from all DSPP length haplotypes, and mapped the known DSPP mutations in this context. Analyses of the DSPP sequence changes and their probable effects on protein expression, as well as published findings of the dental phenotype in Dspp null mice, support the hypothesis that all DSPP mutations cause pathology through dominant-negative effects. Noting that Dspp is transiently expressed by mouse pre-ameloblasts during formation of the dentino-enamel junction, we hypothesize that DSPP dominant-negative effects potentially cause cellular pathology in pre-ameloblasts that, in turn, causes enamel defects. We conclude that enamel defects can be part of the dental phenotype caused by DSPP mutations, although DSPP is not critical for dental enamel formation.
牙本质涎磷蛋白(DSPP)突变可导致II型牙本质发育异常(DD-II)以及II型和III型牙本质生成不全(分别为DGI-II和DGI-III)。我们鉴定出两个患有DGI-II的家系,其表现出釉质发育不全的垂直条带。两个家系都有一个先前报道的与疾病表型共分离的DSPP突变。使用一个家系中四名患病和一名未患病参与者以及第二个家系中先证者的口腔照片和牙科X光片来记录牙齿表型。我们比对了33个独特的等位基因DSPP序列,这些序列显示出不同的插入和缺失(indel)模式,生成了一个合并的牙本质磷蛋白(DPP)序列,该序列包括来自所有DSPP长度单倍型的序列,并在此背景下定位了已知的DSPP突变。对DSPP序列变化及其对蛋白质表达可能影响的分析,以及Dspp基因敲除小鼠牙齿表型的已发表研究结果,支持了所有DSPP突变通过显性负效应导致病理改变的假说。注意到Dspp在小鼠成釉细胞前期形成牙本质-釉质界期间短暂表达,我们推测DSPP的显性负效应可能导致成釉细胞前期的细胞病理改变,进而导致釉质缺陷。我们得出结论,尽管DSPP对牙釉质形成并非至关重要,但釉质缺陷可能是DSPP突变所致牙齿表型的一部分。