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Evolutionary Analysis Predicts Sensitive Positions of MMP20 and Validates Newly- and Previously-Identified MMP20 Mutations Causing Amelogenesis Imperfecta

机译:进化分析预测MMP20的敏感位置,并进行新的和先前鉴定的<斜体> MMP20 突变导致AMELOGINAESE

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Amelogenesis imperfecta (AI) designates a group of genetic diseases characterized by a large range of enamel disorders causing important social and health problems. These defects can result from mutations in enamel matrix proteins or protease encoding genes. A range of mutations in the enamel cleavage enzyme matrix metalloproteinase-20 gene ( MMP20 ) produce enamel defects of varying severity. To address how various alterations produce a range of AI phenotypes, we performed a targeted analysis to find MMP20 mutations in French patients diagnosed with non-syndromic AI. Genomic DNA was isolated from saliva and MMP20 exons and exon-intron boundaries sequenced. We identified several homozygous or heterozygous mutations, putatively involved in the AI phenotypes. To validate missense mutations and predict sensitive positions in the MMP20 sequence, we evolutionarily compared 75 sequences extracted from the public databases using the Datamonkey webserver. These sequences were representative of mammalian lineages, covering more than 150 million years of evolution. This analysis allowed us to find 324 sensitive positions (out of the 483 MMP20 residues), pinpoint functionally important domains, and build an evolutionary chart of important conserved MMP20 regions. This is an efficient tool to identify new- and previously-identified mutations. We thus identified six functional MMP20 mutations in unrelated families, finding two novel mutated sites. The genotypes and phenotypes of these six mutations are described and compared. To date, 13 MMP20 mutations causing AI have been reported, making these genotypes and associated hypomature enamel phenotypes the most frequent in AI.
机译:Amelogesesis Imperfecta(AI)指定一组遗传疾病,其特征,其特征在于造成重要的社会和健康问题的大量搪瓷障碍。这些缺陷可以由牙釉质基质蛋白或蛋白酶编码基因的突变导致。搪瓷切割酶基质金属蛋白酶-20基因(MMP20)中的一系列突变产生了不同严重程度的釉质缺陷。为了解决各种改变,改变如何产生一系列AI表型,我们进行了针对性分析,以查找诊断出非综合症AI的法国患者中的MMP20突变。从唾液和MMP20外显子分离基因组DNA,并测序外显子内界。我们鉴定了几种纯合或杂合的突变,涉及AI表型。为了验证MMP20序列中的敏感突变并预测敏感位置,我们使用DataMonkey WebServer从公共数据库中提取的75个序列进行了进化。这些序列代表哺乳动物谱系,涵盖超过1.5亿年的进化。该分析允许我们找到324个敏感位置(从483 mmp20残留物中),确定功能上的重要域,并建立重要的保守MMP20区域的进化图。这是一个有效的工具来识别新的和以前识别的突变。因此,我们在不相关的家族中鉴定了六种功能性MMP20突变,发现了两个新的突变位点。描述并比较这六个突变的基因型和表型。迄今为止,已经报道了引起AI的13MMP20突变,使这些基因型和相关的低度牙釉质表型在AI中最常见。

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