Paine M L, Krebsbach P H, Chen L S, Paine C T, Yamada Y, Deutsch D, Snead M L
University of Southern California, School of Dentistry, Center for Craniofacial Molecular Biology, Los Angeles 90033, USA.
J Dent Res. 1998 Mar;77(3):496-502. doi: 10.1177/00220345980770030901.
Enamel crystallites form in a protein matrix located proximal to the ameloblast cell layer. This unique organic extracellular matrix is constructed from structural protein components biosynthesized and secreted by ameloblasts. To date, three distinct classes of enamel matrix proteins have been cloned. These are the amelogenins, tuftelin, and ameloblastin, with recent data implicating ameloblastin gene expression during cementogenesis. The organic enamel extracellular matrix undergoes assembly to provide a three-dimensional array of protein domains that carry out the physiologic function of guiding enamel hydroxyapatite crystallite formation. Using the yeast two-hybrid system, we have surveyed these three known enamel gene products for their ability to direct self-assembly. We measured the capacity of the enamel gene products to direct protein-to-protein interactions, a characteristic of enamel proteins predicated to be required for self-assembly. We provide additional evidence for the self-assembly nature of amelogenin and tuftelin. Ameloblastin self-assembly could not be demonstrated, nor were protein-to-protein interactions observed between ameloblastin and either amelogenin or tuftelin. Within the limits of the yeast two-hybrid assay, these findings constrain the emerging model of enamel matrix assembly by helping to define the limits of enamel matrix protein-protein interactions that are believed to guide enamel mineral crystallite formation.
釉质微晶在成釉细胞层近端的蛋白质基质中形成。这种独特的有机细胞外基质由成釉细胞生物合成和分泌的结构蛋白成分构成。迄今为止,已克隆出三类不同的釉质基质蛋白。它们是釉原蛋白、牙本质涎磷蛋白和釉蛋白,最近的数据表明釉蛋白基因在牙骨质形成过程中表达。有机釉质细胞外基质进行组装,以提供一系列三维蛋白质结构域,这些结构域执行引导釉质羟基磷灰石微晶形成的生理功能。利用酵母双杂交系统,我们研究了这三种已知的釉质基因产物指导自我组装的能力。我们测量了釉质基因产物指导蛋白质与蛋白质相互作用的能力,这种蛋白质与蛋白质相互作用的特性是釉质蛋白质自我组装所必需的。我们为釉原蛋白和牙本质涎磷蛋白的自我组装性质提供了额外证据。未能证明釉蛋白的自我组装,也未观察到釉蛋白与釉原蛋白或牙本质涎磷蛋白之间的蛋白质与蛋白质相互作用。在酵母双杂交试验的范围内,这些发现通过帮助定义被认为引导釉质矿物微晶形成的釉质基质蛋白质与蛋白质相互作用的界限,限制了正在形成的釉质基质组装模型。