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ACVR1 在牙本质形成中的独特作用:磨牙牙本质厚度的要求和防止小鼠切牙骨牙本质形成。

Distinctive role of ACVR1 in dentin formation: requirement for dentin thickness in molars and prevention of osteodentin formation in incisors of mice.

机构信息

Department of Oral Pathology, School and Hospital of Stomatology, Jilin University, Changchun, 130021, China.

Jilin Provincial Key Laboratory of Tooth Development and Bone Remodeling, Changchun, 130021, China.

出版信息

J Mol Histol. 2019 Feb;50(1):43-61. doi: 10.1007/s10735-018-9806-z. Epub 2018 Dec 5.

Abstract

Dentin is a major component of teeth that protects dental pulp and maintains tooth health. Bone morphogenetic protein (BMP) signaling is required for the formation of dentin. Mice lacking a BMP type I receptor, activin A receptor type 1 (ACVR1), in the neural crest display a deformed mandible. Acvr1 is known to be expressed in the dental mesenchyme. However, little is known about how BMP signaling mediated by ACVR1 regulates dentinogenesis. To explore the role of ACVR1 in dentin formation in molars and incisors in mice, Acvr1 was conditionally disrupted in Osterix-expressing cells (designated as cKO). We found that loss of Acvr1 in the dental mesenchyme led to dentin dysplasia in molars and osteodentin formation in incisors. Specifically, the cKO mice exhibited remarkable tooth phenotypes characterized by thinner dentin and thicker predentin, as well as compromised differentiation of odontoblasts in molars. We also found osteodentin formation in the coronal part of the cKO mandibular incisors, which was associated with a reduction in the expression of odontogenic gene Dsp and an increase in the expression of osteogenic gene Bsp, leading to an alteration of cell fate from odontoblasts to osteoblasts. In addition, the expressions of WNT antagonists, Dkk1 and Sost, were downregulated and B-catenin was up-regulated in the cKO incisors, while the expression levels were not changed in the cKO molars, compared with the corresponding controls. Our results indicate the distinct and critical roles of ACVR1 between incisors and molars, which is associated with alterations in the WNT signaling related molecules. This study demonstrates for the first time the physiological roles of ACVR1 during dentinogenesis.

摘要

牙本质是牙齿的主要组成部分,可保护牙髓并维持牙齿健康。骨形态发生蛋白(BMP)信号对于牙本质的形成是必需的。在神经嵴中缺乏 BMP Ⅰ型受体(激活素 A 受体Ⅰ型,ACVR1)的小鼠,其下颌骨畸形。已知 Acvr1 在牙间质中表达。然而,关于 ACVR1 如何通过 BMP 信号调节牙本质形成知之甚少。为了探索 ACVR1 在小鼠磨牙和切牙牙本质形成中的作用,我们在 Osterix 表达细胞中条件性敲除 Acvr1(命名为 cKO)。我们发现,牙间质中 Acvr1 的缺失导致磨牙牙本质发育不良和切牙骨化牙本质形成。具体而言,cKO 小鼠表现出明显的牙齿表型特征,包括牙本质变薄、前期牙本质变厚以及磨牙成牙本质细胞分化受损。我们还发现 cKO 下颌切牙冠状部有骨化牙本质形成,与牙源性基因 Dsp 表达减少和骨源性基因 Bsp 表达增加有关,导致细胞命运从成牙本质细胞向成骨细胞转变。此外,与相应的对照相比,cKO 切牙中 WNT 拮抗剂 Dkk1 和 Sost 的表达下调,β-连环蛋白上调,而 cKO 磨牙中的表达水平没有变化。我们的结果表明,ACVR1 在切牙和磨牙之间具有独特而关键的作用,这与 WNT 信号相关分子的改变有关。这项研究首次证明了 ACVR1 在牙本质形成过程中的生理作用。

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