Stephanopoulos G, Garefalaki M-E, Lyroudia K
Diploma in Dental Science, Aristotle University of Thessaloniki, Greece.
J Dent Res. 2005 Dec;84(12):1117-26. doi: 10.1177/154405910508401206.
Dental enamel formation is a remarkable example of a biomineralization process. The exact mechanisms involved in this process remain partly obscure. Some of the genes encoding specific enamel proteins have been indicated as candidate genes for amelogenesis imperfecta. Mutational analyses within studied families have supported this hypothesis. Mutations in the amelogenin gene (AMELX) cause X-linked amelogenesis imperfecta, while mutations in the enamelin gene (ENAM) cause autosomal-inherited forms of amelogenesis imperfecta. Recent reports involve kallikrein-4 (KLK4), MMP-20, and DLX3 genes in the etiologies of some cases. This paper focuses mainly on the candidate genes involved in amelogenesis imperfecta and the proteins derived from them, and reviews current knowledge on their structure, localization within the tissue, and correlation with the various types of this disorder.
牙釉质形成是生物矿化过程的一个显著例子。该过程所涉及的确切机制仍部分不明。一些编码特定釉质蛋白的基因已被指出是牙釉质发育不全的候选基因。在所研究家族中的突变分析支持了这一假说。釉原蛋白基因(AMELX)的突变导致X连锁牙釉质发育不全,而釉蛋白基因(ENAM)的突变导致常染色体遗传形式的牙釉质发育不全。最近的报告表明激肽释放酶-4(KLK4)、基质金属蛋白酶-20(MMP-20)和远端缺失同源盒3(DLX3)基因与某些病例的病因有关。本文主要聚焦于与牙釉质发育不全相关的候选基因及其衍生的蛋白质,并综述了目前关于它们的结构、在组织中的定位以及与该疾病各种类型的相关性的知识。