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首页> 外文期刊>European journal of medical genetics >The genetic basis of inherited anomalies of the teeth. Part 1: clinical and molecular aspects of non-syndromic dental disorders.
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The genetic basis of inherited anomalies of the teeth. Part 1: clinical and molecular aspects of non-syndromic dental disorders.

机译:牙齿遗传异常的遗传基础。第1部分:非综合症牙科疾病的临床和分子方面。

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摘要

The genetic control of dental development represents a complex series of events, which can very schematically be divided in two pathways: specification of type, size and position of each dental organ, and specific processes for the formation of enamel and dentin. Several genes linked with early tooth positioning and development, belong to signalling pathways and have morphogenesis regulatory functions in morphogenesis of other organs where they are associated with the signalling pathways. Their mutations often show pleiotropic effects beyond dental morphogenesis resulting in syndromic developmental disorders. Some genes affecting early tooth development (MSX1, AXIN2) are associated with tooth agenesis and systemic features (cleft palate, colorectal cancer). By contrast, genes involved in enamel (AMELX, ENAM, MMP20, and KLK4) and dentin (DSPP) structures are highly specific for tooth. Mutations in these genes have been identified as causes of amelogenesis imperfecta, dentinogenesis imperfecta, dentin dysplasias and anomalies of teeth number (hypo-, oligo and anodontia), which only partially overlap with the classical phenotypic classifications of dental disorders. This review of genetic basis of inherited anomalies describes, in this first paper, the molecular bases and clinical features of inherited non-syndromic teeth disorders. And in a second part, the review focus on genetic syndromes with dental involvement.
机译:牙齿发育的遗传控制代表一系列复杂的事件,可以非常示意性地分为两个途径:每个牙齿器官的类型,大小和位置的规范以及牙釉质和牙本质形成的特定过程。与早期牙齿定位和发育有关的几个基因属于信号传导途径,并在其他器官的形态发生中具有形态发生调节功能,这些器官与信号传导途径相关。它们的突变通常显示出超越牙齿形态发生的多效性作用,从而导致综合征性发育障碍。一些影响牙齿早期发育的基因(MSX1,AXIN2)与牙齿发育不全和全身特征(left裂,结直肠癌)有关。相反,涉及牙釉质的基因(AMELX,ENAM,MMP20和KLK4)和牙本质(DSPP)结构对牙齿具有高度特异性。这些基因的突变已被确定为牙釉质发育不全,牙本质生成不全,牙本质发育异常和牙齿数量异常(低齿,少齿和无齿畸形)的原因,它们仅与经典的牙齿疾病表型分类部分重叠。遗传异常遗传基础的综述在第一篇论文中描述了遗传性非综合征性牙齿疾病的分子基础和临床特征。在第二部分中,本文将重点介绍与牙齿有关的遗传综合症。

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