The Junctional Epithelium Attachment Is Regulated by Wnt Signaling.

F Aellos, P L Cuevas, K G Harder, J A Grauer, A Ramos, B Liu, J A Helms
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Abstract

The molecular mechanisms mediating barrier functions of the junctional epithelium (JE) are incompletely understood. The aim of this study was to gain mechanistic insights into how reduced Wnt/β-catenin signaling affects the metabolism, turnover, and attachment of JE cells to the tooth surface. A membrane-permeable selective inhibitor of the Wntless protein, C59, was topically delivered to the JE. Wnt pathway suppression was verified by using Axin2LacZ/+ and Axin2CreERT2/+;R26RmTmG/+ strains of mice. Quantitative analyses were carried out at multiple time points to assess mitotic activity, apoptosis, expression of hemidesmosomal attachment proteins, distribution of immune cells, collagen remodeling, and alveolar bone resorption. To complement these studies, Wntless was genetically deleted in osteocalcin-expressing cells, including those in the JE, after which the same quantitative analyses were performed. C59 caused a dose-dependent inhibition in Wnt signaling, which led to reduced mitotic activity and increased apoptosis in the JE. Continued dosing of C59 was accompanied by downregulation of the hemidesmosome attachment proteins laminin 5, plectin, and integrin β4 and a disruption in collagen orientation. A genetic approach in which Wntless function was inhibited in osteocalcin-expressing JE cells yielded similar inhibitory effects on Wnt signaling, mitotic activity, the JE's attachment to the tooth surface, and an increase in immune cells within the connective tissue. Wnt/β-catenin signaling is required for JE homeostasis, and disruptions to the pathway are sufficient to cause JE breakdown and attachment loss. Methods to modulate Wnt/β-catenin signaling may prove beneficial in restoring JE homeostasis after injury or disease.

Wnt信号通路调控连接上皮附着。
介导连接上皮(JE)屏障功能的分子机制尚不完全清楚。本研究的目的是获得Wnt/β-catenin信号减少如何影响乙脑细胞在牙齿表面的代谢、周转和附着的机制见解。Wntless蛋白的一种膜渗透性选择性抑制剂C59被局部递送到乙脑。使用小鼠Axin2LacZ/+和Axin2CreERT2/+;R26RmTmG/+菌株验证Wnt通路的抑制作用。在多个时间点进行定量分析,以评估有丝分裂活性、细胞凋亡、半粒间溶体附着蛋白的表达、免疫细胞的分布、胶原重塑和牙槽骨吸收。为了补充这些研究,在骨钙素表达细胞(包括乙脑细胞)中基因删除Wntless,之后进行相同的定量分析。C59引起Wnt信号的剂量依赖性抑制,导致乙脑有丝分裂活性降低和细胞凋亡增加。持续剂量的C59伴随着半脂体附着蛋白层粘连蛋白5、粘连蛋白和整合素β4的下调以及胶原取向的破坏。在骨钙素表达的乙脑细胞中抑制Wnt功能的遗传方法对Wnt信号传导、有丝分裂活性、乙脑与牙齿表面的附着以及结缔组织内免疫细胞的增加产生了类似的抑制作用。Wnt/β-catenin信号是乙脑稳态所必需的,该通路的破坏足以导致乙脑分解和附着丧失。调节Wnt/β-catenin信号传导的方法可能有助于恢复乙脑损伤或疾病后的稳态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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