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MMP20 Active-site Mutation in Hypomaturation Amelogenesis Imperfecta.

机译:MMP20活性不足突变过早的产卵不全症。

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摘要

The Amelogenesis Imperfecta (AI) are a group of clinically and genetically heterogeneous disorders that affect enamel formation. To date, mutations in 4 genes have been reported in various types of AI. Mutations in the genes encoding the 2 enamel proteases, matrix metalloproteinase 20 (MMP20) and kallikrein 4 (KLK4), have each been reported in a single family segregating autosomal-recessive hypomaturation AI. To determine the frequency of mutations in these genes, we analyzed 15 Turkish probands with autosomal-recessive hypomaturation AI for MMP20 and KLK4 gene mutations. No KLK4 mutations were found. A novel MMP20 mutation (g.16250T>A) was found in one family. This missense mutation changed the conserved active-site His226 residue of the zinc catalytic domain to Gln (p.H226Q). Zymogram analysis demonstrated that this missense mutation abolished MMP20 proteolytic activity. No MMP20 mutations were found in the remaining 14 probands, underscoring the genetic heterogeneity of hypomaturation AI.
机译:Amelogenesis Imperfecta(AI)是一组影响釉质形成的临床和遗传异质性疾病。迄今为止,已经在各种类型的AI中报告了4个基因的突变。编码这两种搪瓷蛋白酶的基因突变,基质金属蛋白酶20(MMP20)和激肽释放酶4(KLK4),均在单个家族中分离出常染色体隐性过早成熟AI。为了确定这些基因中突变的频率,我们分析了具有常染色体隐性过早成熟AI的15个土耳其先证者的MMP20和KLK4基因突变。没有发现KLK4突变。一个家庭发现了一个新的MMP20突变(g.16250T> A)。该错义突变将锌催化结构域的保守的活性位点His226残基改变为Gln(p.H226Q)。波形图分析表明,这种错义突变消除了MMP20的蛋白水解活性。在其余14个先证者中未发现MMP20突变,这强调了早熟AI的遗传异质性。

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