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A Dentin Sialophosphoprotein Mutation That Partially Disrupts a Splice Acceptor Site Causes Type II Dentin Dysplasia

机译:局部破坏剪接受体位点的牙本质唾液磷蛋白突变导致II型牙本质发育异常

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摘要

The dentin sialophosphoprotein (DSPP) gene on chromosome 4q21.3 encodes the major noncollagenous protein in tooth dentin. DSPP mutations are the principal cause of dentin dysplasia type II, dentinogenesis imperfecta type II, and dentinogenesis imperfecta type III. We have identified a DSPP splice junction mutation (IVS2-6T>G) in a family with dentin dysplasia type II. The primary dentition is discolored brown with severe attrition. The mildly discolored permanent dentition has thistle-shaped pulp chambers, pulp stones, and eventual pulp obliteration. The mutation is in the sixth nucleotide from the end of intron 2, perfectly segregates with the disease phenotype, and is absent in 200 normal control chromosomes. An in vitro splicing assay shows that pre-mRNA splicing of the mutant allele generates wild-type mRNA and mRNA lacking exon 3 in approximately equal amounts. Skipping exon 3 might interfere with signal peptide cleavage, causing endoplasmic reticulum stress, and also reduce DSPP secretion, leading to haploinsufficiency.
机译:染色体4q21.3上的牙本质唾液磷蛋白(DSPP)基因编码牙齿牙本质中的主要非胶原蛋白。 DSPP突变是II型牙本质发育异常,II型牙本质生成不完善和III型牙本质生成不完善的主要原因。我们已经鉴定出一个患有II型牙本质不典型增生的家庭中的DSPP剪接连接突变(IVS2-6T> G)。原发牙列呈棕色,严重磨损。永久变色的永久性牙列有蓟形的牙髓腔,牙髓结石,最终牙髓闭塞。该突变位于内含子2末端的第六个核苷酸中,与疾病表型完全分离,并且在200条正常对照染色体中不存在。体外剪接分析表明,突变等位基因的预mRNA剪接产生的野生型mRNA和缺少外显子3的mRNA的数量大致相等。跳过第3外显子可能会干扰信号肽的切割,导致内质网应激,并减少DSPP分泌,导致单倍功能不足。

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