Joseph B K, Gobé G C, Savage N W, Young W G
Department of Dentistry, University of Queensland, Brisbane, Australia.
Int J Exp Pathol. 1994 Oct;75(5):313-20.
The expression of sulphated glycoprotein-2 (SGP-2) is associated with the onset of cellular atrophy and death in many rodent tissues. This gene has a multifunctional involvement that includes apoptosis, spermatogenesis, promotion of cell-cell interactions, modulation of complement systems and tissue regeneration and remodelling. Using decalcified mandibles, mRNA for SGP-2 in rat incisor tooth ameloblasts was examined by in situ hybridization using 35S riboprobes. The rat incisor is unique in that, at one time, all stages of the complex life cycle of the ameloblasts are represented along the length of the enamel forming aspect of the tooth. The pre-ameloblasts only secrete enamel matrix after mitosis. When the full thickness of the enamel has been formed, a remarkable transition in phenotype takes place in the ameloblast. This transition is accompanied by apoptosis or programmed cell death of approximately 25% of ameloblasts. An additional 25% of ameloblasts undergo apoptosis when maturation of enamel matrix takes place with removal of water and protein from the increasingly mineralized matrix. In the present study, expression of SGP-2 was localized most often in the post-secretory transition and maturation ameloblasts. In contrast, the presecretory and secretory ameloblasts did not demonstrate specific hybridization signals. Consistently, neither the odontoblasts nor the pulp demonstrated hybridization signals. Hence our results support other published results which show that increased expression of SGP-2 is associated with apoptosis. The exact function of the SGP-2 gene and its products is not fully defined.(ABSTRACT TRUNCATED AT 250 WORDS)
硫酸化糖蛋白-2(SGP-2)的表达与许多啮齿动物组织中细胞萎缩和死亡的发生有关。该基因具有多种功能,包括细胞凋亡、精子发生、促进细胞间相互作用、调节补体系统以及组织再生和重塑。利用脱钙下颌骨,通过使用35S核糖探针的原位杂交技术检测大鼠切牙成釉细胞中SGP-2的mRNA。大鼠切牙的独特之处在于,在某一时刻,成釉细胞复杂生命周期的所有阶段都沿着牙齿釉质形成面的长度呈现。前成釉细胞仅在有丝分裂后分泌釉基质。当釉质完全形成后,成釉细胞会发生显著的表型转变。这种转变伴随着约25%的成釉细胞凋亡或程序性细胞死亡。当釉基质成熟,随着越来越矿化的基质中水分和蛋白质的去除,另外25%的成釉细胞会发生凋亡。在本研究中,SGP-2的表达最常定位于分泌后转变期和成釉细胞成熟期。相比之下,分泌前和成釉细胞分泌期未显示出特异性杂交信号。同样,成牙本质细胞和牙髓均未显示杂交信号。因此,我们的结果支持其他已发表的结果,即SGP-2表达增加与细胞凋亡有关。SGP-2基因及其产物的确切功能尚未完全明确。(摘要截断于250字)