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Novel MMP20 and KLK4 Mutations in Amelogenesis Imperfecta

机译:新型的MMP20和KLK4突变在Amelogenesis不完美中。

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摘要

In order to achieve highly mineralized tooth enamel, enamel proteinases serve the important function of removing the remaining organic matrix in the mineralization and maturation of the enamel matrix. Mutations in the kallikrein 4 (KLK4), enamelysin (MMP20), and WDR72 genes have been identified as causing hypomaturation enamel defects in an autosomal-recessive hereditary pattern. In this report, 2 consanguineous families with a hypomaturation-type enamel defect were recruited, and mutational analysis was performed to determine the molecular genetic etiology of the disease. Whole exome sequencing and autozygosity mapping identified novel homozygous mutations in the KLK4 (c.620_621delCT, p.Ser207Trpfs*38) and MMP20 (c.1054G>A, p.Glu352Lys) genes. Further analysis on the effect of the mutations on the translation, secretion, and function of KLK4 and MMP20 revealed that mutant KLK4 was degraded intracellularly and became inactive while mutant MMP20 was expressed at a normal level but secreted only minimally with proteolytic function.
机译:为了获得高度矿化的牙釉质,搪瓷蛋白酶起着重要的功能,即在釉质基质的矿化和成熟过程中去除残留的有机基质。激肽释放酶4(KLK4),即溶血素(MMP20)和WDR72基因的突变已被确定为导致常染色体隐性遗传性模式的釉质过低缺陷。在本报告中,招募了两个具有早熟型釉质缺损的近血缘家族,并进行了突变分析以确定该疾病的分子遗传病因。完整的外显子组测序和自合子作图确定了KLK4(c.620_621delCT,p.Ser207Trpfs * 38)和MMP20(c.1054G> A,p.Glu352Lys)基因中的新纯合突变。进一步分析突变对KLK4和MMP20的翻译,分泌和功能的影响,发现突变型KLK4在细胞内降解并失活,而突变型MMP20以正常水平表达,但分泌的蛋白水解功能最低。

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