Program in Craniofacial Biology and Department of Orofacial Sciences, University of California, San Francisco, CA 94143, USA.
Centre for Craniofacial Regeneration and Biology, King's College London, London, SE1 9RT, UK.
Development. 2021 Jul 15;148(14). doi: 10.1242/dev.199685. Epub 2021 Jul 22.
Tooth formation requires complex signaling interactions both within the oral epithelium and between the epithelium and the underlying mesenchyme. Previous studies of the Wnt/β-catenin pathway have shown that tooth formation is partly inhibited in loss-of-function mutants, and gain-of-function mutants have perturbed tooth morphology. However, the stage at which Wnt signaling is first important in tooth formation remains unclear. Here, using an Fgf8-promoter-driven, and therefore early, deletion of β-catenin in mouse molar epithelium, we found that loss of Wnt/β-catenin signaling completely deletes the molar tooth, demonstrating that this pathway is central to the earliest stages of tooth formation. Early expression of a dominant-active β-catenin protein also perturbs tooth formation, producing a large domed evagination at early stages and supernumerary teeth later on. The early evaginations are associated with premature mesenchymal condensation marker, and are reduced by inhibition of condensation-associated collagen synthesis. We propose that invagination versus evagination morphogenesis is regulated by the relative timing of epithelial versus mesenchymal cell convergence regulated by canonical Wnt signaling. Together, these studies reveal new aspects of Wnt/β-catenin signaling in tooth formation and in epithelial morphogenesis more broadly.
牙齿的形成需要口腔上皮细胞内以及上皮细胞和下方的间充质之间的复杂信号相互作用。先前对 Wnt/β-catenin 通路的研究表明,牙齿的形成在功能丧失突变体中部分受到抑制,而功能获得性突变体则扰乱了牙齿形态。然而,Wnt 信号首次在牙齿形成中重要的阶段仍不清楚。在这里,我们使用 Fgf8 启动子驱动的、因此是早期的β-catenin 在小鼠磨牙上皮细胞中的缺失,发现 Wnt/β-catenin 信号的缺失完全删除了磨牙,表明该途径是牙齿形成最早阶段的核心。早期表达显性激活的β-catenin 蛋白也扰乱了牙齿的形成,在早期产生一个大的穹顶状外突,随后产生额外的牙齿。早期的外突与早期的间充质凝聚标记物相关,并且通过抑制与凝聚相关的胶原合成而减少。我们提出,内陷与外突形态发生是由上皮细胞与间充质细胞汇聚的相对时间控制的,而这一过程受经典 Wnt 信号调节。这些研究共同揭示了 Wnt/β-catenin 信号在牙齿形成以及更广泛的上皮形态发生中的新方面。