Veis A, Tompkins K, Alvares K, Wei K, Wang L, Wang X S, Brownell A G, Jengh S M, Healy K E
Department of Basic and Behavioral Sciences, Northwestern University Dental School, Chicago, Illinois 60611, USA.
J Biol Chem. 2000 Dec 29;275(52):41263-72. doi: 10.1074/jbc.M002308200.
Low molecular mass amelogenin-related polypeptides extracted from mineralized dentin have the ability to affect the differentiation pathway of embryonic muscle fibroblasts in culture and lead to the formation of mineralized matrix in in vivo implants. The objective of the present study was to determine whether the bioactive peptides could have been amelogenin protein degradation products or specific amelogenin gene splice products. Thus, the splice products were prepared, and their activities were determined in vitro and in vivo. A rat incisor tooth odontoblast pulp cDNA library was screened using probes based on the peptide amino acid sequencing data. Two specific cDNAs comprised from amelogenin gene exons 2,3,4,5,6d,7 and 2,3,5,6d, 7 were identified. The corresponding recombinant proteins, designated r[A+4] (8.1 kDa) and r[A-4] (6.9 kDa), were produced. Both peptides enhanced in vitro sulfate incorporation into proteoglycan, the induction of type II collagen, and Sox9 or Cbfa1 mRNA expression. In vivo implant assays demonstrated implant mineralization accompanied by vascularization and the presence of the bone matrix proteins, BSP and BAG-75. We postulate that during tooth development these specific amelogenin gene splice products, [A+4] and [A-4], may have a role in preodontoblast maturation. The [A+4] and [A-4] may thus be tissue-specific epithelial mesenchymal signaling molecules.
从矿化牙本质中提取的低分子量釉原蛋白相关多肽能够影响培养的胚胎肌肉成纤维细胞的分化途径,并导致体内植入物中矿化基质的形成。本研究的目的是确定这些生物活性肽是否可能是釉原蛋白的降解产物或特定的釉原蛋白基因剪接产物。因此,制备了剪接产物,并在体外和体内测定了它们的活性。使用基于肽氨基酸测序数据的探针筛选大鼠切牙成牙本质细胞牙髓cDNA文库。鉴定出两个由釉原蛋白基因外显子2、3、4、5、6d、7和2、3、5、6d、7组成的特异性cDNA。产生了相应的重组蛋白,命名为r[A+4](8.1 kDa)和r[A-4](6.9 kDa)。两种肽均增强了体外蛋白聚糖中硫酸盐的掺入、II型胶原的诱导以及Sox9或Cbfa1 mRNA的表达。体内植入实验表明植入物矿化伴随着血管化以及骨基质蛋白BSP和BAG-75的存在。我们推测在牙齿发育过程中,这些特定的釉原蛋白基因剪接产物[A+4]和[A-4]可能在成牙本质细胞前体细胞成熟中起作用。因此,[A+4]和[A-4]可能是组织特异性的上皮间充质信号分子。