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β-连环蛋白在釉质发育过程中对成釉细胞的移动至关重要。

Beta-catenin is essential for ameloblast movement during enamel development.

作者信息

Guan Xiaomu, Xu Mingang, Millar Sarah E, Bartlett John D

机构信息

Department of Mineralized Tissue Biology and Harvard School of Dental Medicine, Forsyth Institute, Cambridge, MA, USA.

Departments of Dermatology and Cell & Developmental Biology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, USA.

出版信息

Eur J Oral Sci. 2016 Jun;124(3):221-7. doi: 10.1111/eos.12261. Epub 2016 Mar 9.

DOI:10.1111/eos.12261
PMID:26957367
Abstract

Beta-catenin is a multifunctional protein that plays key roles in cadherin-based cell adherens junctions and in the Wnt signaling pathway. The canonical Wnt/β-catenin pathway can regulate transcription factors that control cell movement/invasion. We investigated whether β-catenin regulates ameloblast movement through canonical Wnt signaling. The morphological and physical properties of enamel were assessed in enamel from control and β-catenin conditional knockout (cKO) mice. Ameloblast-lineage cells (ALC) were used to investigate the potential roles of β-catenin in cell migration and in E-cadherin expression. Compared with controls, incisors from β-catenin cKO mice were short, blunt, and where enamel was present, it was soft and malformed. Scanning electron microscopy revealed a dysplastic rod pattern within the enamel of incisors from β-catenin cKO mice, and Vickers microhardness measurements confirmed that mice with β-catenin ablated from their enamel organ had enamel that was significantly softer than normal. Amelogenesis was disrupted in the absence of β-catenin and the ameloblasts did not differentiate properly. We further demonstrated that migration of ALCs was inhibited in vitro and that E-cadherin expression was significantly up-regulated when ALCs were treated with the β-catenin inhibitor, ICG-001. Beta-catenin ablation causes enamel malformation in mice and this phenotype may occur, in part, by a lack of ameloblast differentiation and/or movement necessary to form the decussating enamel rod structure.

摘要

β-连环蛋白是一种多功能蛋白质,在基于钙黏蛋白的细胞黏附连接和Wnt信号通路中发挥关键作用。经典的Wnt/β-连环蛋白通路可以调节控制细胞运动/侵袭的转录因子。我们研究了β-连环蛋白是否通过经典Wnt信号传导调节成釉细胞的运动。在对照小鼠和β-连环蛋白条件性敲除(cKO)小鼠的牙釉质中评估了牙釉质的形态和物理特性。使用成釉细胞系细胞(ALC)来研究β-连环蛋白在细胞迁移和E-钙黏蛋白表达中的潜在作用。与对照组相比,β-连环蛋白cKO小鼠的门牙短而钝,并且在有牙釉质的地方,牙釉质柔软且畸形。扫描电子显微镜显示,β-连环蛋白cKO小鼠门牙牙釉质内的釉柱形态异常,维氏显微硬度测量证实,牙釉质器官中β-连环蛋白缺失的小鼠的牙釉质明显比正常的软。在没有β-连环蛋白的情况下,成釉过程受到破坏,成釉细胞不能正常分化。我们进一步证明,在体外,ALC的迁移受到抑制,并且当用β-连环蛋白抑制剂ICG-001处理ALC时,E-钙黏蛋白的表达显著上调。β-连环蛋白缺失导致小鼠牙釉质畸形,这种表型可能部分是由于缺乏形成交叉釉柱结构所需的成釉细胞分化和/或运动所致。

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