George A, Silberstein R, Veis A
Division of Oral Biology, Northwestern University, Chicago, IL 60611, USA.
Connect Tissue Res. 1995;33(1-3):67-72. doi: 10.3109/03008209509016984.
Acidic phosphorylated proteins are prominent constituents of the extracellular matrix of bone and dentin. It has been postulated that they may have important structural and regulatory roles in the process of tissue mineralization. Studies of a cDNA library, prepared from cells of the rat incisor odontoblast-pulp complex of 3 week old Sprague-Dawley rats, led to the identification of a serine-rich acidic protein, designated AG1, which appeared to be a dentin matrix component. In order to determine which cells of the odontoblast-pulp complex were responsible for the making of AG1, in situ hybridization was carried out using digoxigenin-labeled probes. The full length AG1 cDNA was subcloned into the pBluescript vector, which contains two strong promoters, T3 and T7. The sense and antisense complementary RNA (cRNA) hybridization probes were prepared by in vitro transcription using T3 and T7 polymerases in the presence of 11-dUTP. Incisor sections were obtained from rat embryos at days 16, and 20, and newborns at days 2 and 5. No AG1 mRNA was detected in the embryonic sections, but digoxigenin labeling was evident in odontoblasts secreting mineralizing dentin at postnatal days 2 and 5. Sense probes showed no hybridization. Pulp cells, Meckel's cartilage, and alveolar bone were free of hybridization with the antisense probe. Unexpectedly, a low level of digoxigenin staining was seen in the cytoplasm of secretory ameloblasts, but not in the preameloblasts, stratum intermedium or stellate reticulum of the enamel organ. These data show that AG1 expression is regulated developmentally and is restricted to secretory stage mature odontoblasts.
酸性磷酸化蛋白是骨骼和牙本质细胞外基质的主要成分。据推测,它们可能在组织矿化过程中发挥重要的结构和调节作用。对3周龄Sprague-Dawley大鼠切牙成牙本质细胞-牙髓复合体细胞制备的cDNA文库进行研究,鉴定出一种富含丝氨酸的酸性蛋白,命名为AG1,它似乎是牙本质基质成分。为了确定成牙本质细胞-牙髓复合体中哪些细胞负责AG1的合成,使用地高辛标记的探针进行原位杂交。将全长AG1 cDNA亚克隆到含有两个强启动子T3和T7的pBluescript载体中。在11-dUTP存在下,使用T3和T7聚合酶通过体外转录制备正义和反义互补RNA(cRNA)杂交探针。从第16天和第20天的大鼠胚胎以及第2天和第5天的新生大鼠获取切牙切片。在胚胎切片中未检测到AG1 mRNA,但在出生后第2天和第5天分泌矿化牙本质的成牙本质细胞中地高辛标记明显。正义探针未显示杂交信号。牙髓细胞、梅克尔软骨和牙槽骨与反义探针无杂交信号。出乎意料的是,在分泌期成釉细胞的细胞质中可见低水平的地高辛染色,但在成釉器的前成釉细胞、中间层或星网状层中未见。这些数据表明AG1的表达受发育调控,且仅限于分泌期成熟的成牙本质细胞。