Department of Oral Histology-Developmental Biology, School of Dentistry and Dental Research Institute, BK 21, Seoul National University, Seoul 110-749, Korea.
J Cell Biochem. 2010 Oct 15;111(3):755-67. doi: 10.1002/jcb.22766.
We have previously reported that the odontogenic ameloblast-associated protein (ODAM) plays important roles in enamel mineralization through the regulation of matrix metalloproteinase-20 (MMP-20). However, the precise function of ODAM in MMP-20 regulation remains largely unknown. The aim of the present study was to uncover the molecular mechanisms responsible for MMP-20 regulation. The subcellular localization of ODAM varies in a stage-specific fashion during ameloblast differentiation. During the secretory stage of amelogenesis ODAM was localized to both the nucleus and cytoplasm of ameloblasts. However, during the maturation stage of amelogenesis, ODAM was observed in the cytoplasm and at the interface between ameloblasts and the enamel layer, but not in the nucleus. Secreted ODAM was detected in the conditioned medium of ameloblast-lineage cell line (ALC) from days 14 to 21, which coincided with the maturation stage of amelogenesis. Interestingly, the expression of Runx2 and nuclear ODAM correlated with MMP-20 expression in ALC. We therefore examined whether ODAM cooperates with Runx2 to regulate MMP-20 and modulate enamel mineralization. Increased expression of ODAM and Runx2 augmented MMP-20 expression, and Runx2 expression enhanced expression of ODAM, although overexpression of ODAM did not influence Runx2 expression. Conversely, loss of Runx2 in ALC decreased ODAM expression, resulting in down-regulation of MMP-20 expression. Increased MMP-20 expression accelerated amelogenin processing during enamel mineralization. Our data suggest that Runx2 regulates the expression of ODAM and that nuclear ODAM serves an important regulatory function in the mineralization of enamel through the regulation of MMP-20 apart from a different, currently unidentified, function of extracellular ODAM.
我们之前曾报道过,牙源性成釉细胞相关蛋白(ODAM)通过调节基质金属蛋白酶-20(MMP-20)在釉质矿化中发挥重要作用。然而,ODAM 调节 MMP-20 的精确功能在很大程度上仍不清楚。本研究旨在揭示 MMP-20 调节的分子机制。ODAM 在成釉细胞分化过程中的亚细胞定位具有阶段特异性。在釉质发生的分泌期,ODAM 定位于成釉细胞的核和细胞质。然而,在釉质发生的成熟阶段,ODAM 仅存在于成釉细胞质中,以及成釉细胞与釉质层的界面,而不存在于核中。在牙源性细胞系(ALC)的条件培养基中从第 14 天到第 21 天检测到分泌的 ODAM,这与釉质发生的成熟阶段一致。有趣的是,Runx2 和核 ODAM 的表达与 ALC 中的 MMP-20 表达相关。因此,我们研究了 ODAM 是否与 Runx2 合作来调节 MMP-20 并调节釉质矿化。ODAM 和 Runx2 的表达增加会增强 MMP-20 的表达,并且 Runx2 的表达会增强 ODAM 的表达,尽管 ODAM 的过表达不会影响 Runx2 的表达。相反,ALC 中 Runx2 的缺失会降低 ODAM 的表达,导致 MMP-20 的表达下调。MMP-20 表达增加会加速釉质矿化过程中成釉蛋白的加工。我们的数据表明,Runx2 调节 ODAM 的表达,核 ODAM 通过调节 MMP-20 在釉质矿化中发挥重要的调节功能,而细胞外 ODAM 具有不同的、目前尚未确定的功能。