Stim1 调控釉质矿化和成釉细胞调节。

Stim1 Regulates Enamel Mineralization and Ameloblast Modulation.

机构信息

1 Section of Orthodontics and Dentofacial Orthopedics, Division of Oral Health, Growth, and Development, Faculty of Dental Science, Kyushu University, Fukuoka, Japan.

2 Institute of Decision Science Program for Sustainable Society, Kyushu University, Fukuoka, Japan.

出版信息

J Dent Res. 2017 Nov;96(12):1422-1429. doi: 10.1177/0022034517719872. Epub 2017 Jul 21.

Abstract

Loss-of-function mutations in the Ca release-activated Ca channel genes ORAI1 and STIM1 abolish store-operated Ca entry (SOCE) and result in ectodermal dysplasia with amelogenesis imperfecta. However, because of the limited availability of patient tissue, analyses of enamel mineralization or possible changes in ameloblast function or morphology have not been possible. Here, we generated mice with ectodermal tissue-specific deletion of Stim1 ( Stim1 cKO [conditional knockout]), Stim2 ( Stim2 cKO), and Stim1 and Stim2 ( Stim1/2 cKO) and analyzed their enamel phenotypes as compared with those of control ( Stim1/2) animals. Ablation of Stim1 and Stim1/2 but not Stim2 expression resulted in chalky enamel and severe attrition at the incisor tips and molar cusps. Stim1 and Stim1/2 cKO, but not Stim2 cKO, demonstrated inferior enamel mineralization with impaired structural integrity, whereas the shape of the teeth and enamel thickness appeared to be normal in all animals. The gene expression levels of the enamel matrix proteins Amelx and Ambn and the enamel matrix proteases Mmp20 and Klk4 were not altered by the abrogation of SOCE in Stim1/2 cKO mice. The morphology of ameloblasts during the secretory and maturation stages was not significantly altered in either the incisors or molars of the cKO animals. However, in Stim1 and Stim1/2 cKO incisors, the alternating modulation of maturation-stage ameloblasts between the smooth- and ruffle-ended cell types continued beyond the regular cycle and extended to the areas corresponding to the zone of postmodulation ameloblasts in the teeth of control animals. These results indicate that SOCE is essential for proper enamel mineralization, in which Stim1 plays a critical role during the maturation process.

摘要

钙释放激活钙通道基因 ORAI1 和 STIM1 的功能丧失性突变会导致钙库操纵性钙内流(SOCE)丧失,并导致外胚层发育不良伴牙釉质不全。然而,由于患者组织的可用性有限,对牙釉质矿化或成釉细胞功能或形态的可能变化进行分析尚未成为可能。在这里,我们生成了外胚层组织特异性敲除 Stim1(Stim1 cKO)、Stim2(Stim2 cKO)和 Stim1 和 Stim2(Stim1/2 cKO)的小鼠,并将其牙釉质表型与对照(Stim1/2)动物进行了比较。Stim1 和 Stim1/2 的敲除,但不是 Stim2 的敲除,导致牙釉质呈粉笔状,切牙和磨牙牙尖严重磨损。Stim1 和 Stim1/2 cKO,但不是 Stim2 cKO,表现出牙釉质矿化不良,结构完整性受损,而所有动物的牙齿形状和牙釉质厚度似乎正常。牙釉质基质蛋白 Amelx 和 Ambn 以及牙釉质基质蛋白酶 Mmp20 和 Klk4 的基因表达水平在 Stim1/2 cKO 小鼠中 SOCE 被阻断时并未改变。在 Stim1 和 Stim1/2 cKO 切牙中,无论是在 secretory 期还是在成熟期,成釉细胞的形态都没有明显改变。然而,在 Stim1 和 Stim1/2 cKO 切牙中,成熟期成釉细胞的平滑端和皱襞端细胞类型之间的交替调制在正常周期之外继续进行,并延伸到对照动物牙齿中后调制成釉细胞区对应的区域。这些结果表明,SOCE 是牙釉质矿化所必需的,其中 Stim1 在成熟过程中起着关键作用。

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