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G 蛋白偶联受体 Gpr111/Adgrf2 缺乏通过改变 pH 循环过程中激肽释放酶相关肽酶 4(Klk4)的表达导致小鼠牙釉质矿化不全。

Deficiency of G protein-coupled receptor Gpr111/Adgrf2 causes enamel hypomineralization in mice by alteration of the expression of kallikrein-related peptidase 4 (Klk4) during pH cycling process.

机构信息

Section of Pediatric Dentistry, Division of Oral Health, Growth and Development, Kyushu University Faculty of Dental Science, Fukuoka, Japan.

Division of Pediatric Dentistry, Department of Community Social Dentistry, Tohoku University Graduate School of Dentistry, Sendai, Japan.

出版信息

FASEB J. 2023 Apr;37(4):e22861. doi: 10.1096/fj.202202053R.

Abstract

Enamel is formed by the repetitive secretion of a tooth-specific extracellular matrix and its decomposition. Calcification of the enamel matrix via hydroxyapatite (HAP) maturation requires pH cycling to be tightly regulated through the neutralization of protons released during HAP synthesis. We found that Gpr115, which responds to changes in extracellular pH, plays an important role in enamel formation. Gpr115-deficient mice show partial enamel hypomineralization, suggesting that other pH-responsive molecules may be involved. In this study, we focused on the role of Gpr111/Adgrf2, a duplicate gene of Gpr115, in tooth development. Gpr111 was highly expressed in mature ameloblasts. Gpr111-KO mice showed enamel hypomineralization. Dysplasia of enamel rods and high carbon content seen in Gpr111-deficient mice suggested the presence of residual enamel matrices in enamel. Depletion of Gpr111 in dental epithelial cells induced the expression of ameloblast-specific protease, kallikrein-related peptidase 4 (Klk4), suggesting that Gpr111 may act as a suppressor of Klk4 expression. Moreover, reduction of extracellular pH to 6.8 suppressed the expression of Gpr111, while the converse increased Klk4 expression. Such induction of Klk4 was synergistically enhanced by Gpr111 knockdown, suggesting that proper enamel mineralization may be linked to the modulation of Klk4 expression by Gpr111. Furthermore, our in vitro suppression of Gpr111 and Gpr115 expression indicated that their suppressive effect on calcification was additive. These results suggest that both Gpr111 and Gpr115 respond to extracellular pH, contribute to the expression of proteolytic enzymes, and regulate the pH cycle, thereby playing important roles in enamel formation.

摘要

釉质是由牙齿特异性细胞外基质的重复分泌及其分解形成的。通过羟基磷灰石(HAP)成熟使釉质基质钙化需要通过质子中和来严格调节 pH 循环,质子是在 HAP 合成过程中释放的。我们发现,对细胞外 pH 变化作出反应的 Gpr115 在釉质形成中发挥着重要作用。Gpr115 缺陷型小鼠表现出部分釉质矿化不足,这表明可能涉及其他 pH 反应分子。在这项研究中,我们专注于 Gpr111/Adgrf2(Gpr115 的重复基因)在牙齿发育中的作用。Gpr111 在成熟成釉细胞中高度表达。Gpr111-KO 小鼠表现出釉质矿化不足。在 Gpr111 缺陷型小鼠中观察到釉柱发育不良和高碳含量,表明釉质中存在残留的釉质基质。牙上皮细胞中 Gpr111 的耗竭诱导了釉质特异性蛋白酶,激肽释放酶相关肽酶 4(Klk4)的表达,表明 Gpr111 可能作为 Klk4 表达的抑制剂。此外,将细胞外 pH 降低至 6.8 抑制了 Gpr111 的表达,而相反增加了 Klk4 的表达。Gpr111 敲低协同增强了 Klk4 的这种诱导,表明适当的釉质矿化可能与 Gpr111 对 Klk4 表达的调节有关。此外,我们对 Gpr111 和 Gpr115 表达的体外抑制表明,它们对钙化的抑制作用是相加的。这些结果表明,Gpr111 和 Gpr115 均对细胞外 pH 作出反应,有助于蛋白酶表达,并调节 pH 循环,从而在釉质形成中发挥重要作用。

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