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1.
Cells Tissues Organs ; 199(2-3): 159-68, 2014.
Article in English | MEDLINE | ID: mdl-25402745

ABSTRACT

This study examined the effect of sodium fluoride (NaF) on the Wnt and RhoA signaling pathways in murine ameloblast-lineage cells (ALCs) to better understand the developmental mechanisms of dental fluorosis. Wnt and Rho pathway activities were investigated when ALCs were treated with 1.5 mM NaF, dickkopf-related protein-1 (Dkk-1), secreted frizzled related-protein-2 (sFRP-2), ß-catenin siRNA dominant negative RhoA (RhoA(DN)) plasmid and Y-27632. Wnt pathway activity was investigated via RT-PCR, Western blot and Topflash luciferase assay. The activity of the RhoA pathway was analyzed via Rho pull-down assay and immunoprecipitation. The differentiation of ALCs was analyzed by alkaline phosphatase assay. Western blot and Topflash luciferase assay results verified that both the Wnt and Rho pathways were upregulated by 1.5 mM NaF. Wnt was discovered to be located upstream from the Rho pathway, as confirmed by treatment with Wnt pathway cell receptor inhibitors Dkk-1 and sFRP-2, leading to a decrease in RhoA and ROCK activity. Inhibition of the Rho pathway with RhoA(DN) plasmid and Y-27632 caused upregulation of Wnt pathway activity which could be further increased by 1.5 mM NaF. The increased Wnt pathway activity was found to negatively regulate ALC differentiation. These data suggest that fluoride could induce the cross-talk between Wnt and RhoA signaling pathways, and these responses are predicted to contribute to the development of enamel fluorosis. © 2014 S. Karger AG, Basel.


Subject(s)
Ameloblasts/drug effects , Ameloblasts/metabolism , Fluorides/pharmacology , Wnt Proteins/metabolism , rhoA GTP-Binding Protein/metabolism , Animals , Blotting, Western , Cells, Cultured , Mice , Reverse Transcriptase Polymerase Chain Reaction , Signal Transduction , Wnt Proteins/genetics , rhoA GTP-Binding Protein/genetics
2.
Eur J Oral Sci ; 119 Suppl 1: 41-9, 2011 Dec.
Article in English | MEDLINE | ID: mdl-22243225

ABSTRACT

Transgenic mice that express dominant-negative RhoA (RhoA(DN) ) in ameloblasts have hypoplastic enamel with defects in molar cusps. ß-catenin and Wnt5a were up-regulated in enamel organs of RhoA(DN) transgenic mice, which indicated that both canonical and non-canonical Wnt pathways are implicated in the process of enamel defect formation. It was hypothesized that expression of RhoA(DN) in ameloblasts interfered with normal enamel development through the pathways that were induced by fluoride. The Wnt and RhoA pathways were further investigated in an ameloblast-lineage cell line (ALC) by treatment with sodium fluoride (NaF). The activities of RhoA and Rho-associated protein kinase (ROCK) II decreased significantly by 8-12 hours, similar to decreased activity in RhoA(DN) transgenic mice. Both canonical and non-canonical Wnt pathways were activated by treatment with NaF, which was verified by western blotting and the ß-catenin-TCF/LEF (T cell factor lymphanoid/enhancer factor) reporter gene (TOPflash) assay. ß-catenin localization to both cytoplasm and nucleus was up-regulated in NaF-treated ALC, while Gsk-3ß, the negative regulator of the Wnt pathway, showed a decreased pattern of expression. The current results indicate that both Wnt and RhoA pathways are implicated in fluoride-induced signaling transductions in the ALC as well as in the development of enamel defects in RhoA(DN) transgenic mice.


Subject(s)
Ameloblasts/physiology , Amelogenesis/genetics , Dental Enamel Hypoplasia/genetics , Wnt Signaling Pathway/drug effects , Wnt Signaling Pathway/genetics , rho-Associated Kinases/genetics , rhoA GTP-Binding Protein/physiology , Ameloblasts/drug effects , Amelogenin/biosynthesis , Amelogenin/genetics , Animals , Cell Line , Enamel Organ/drug effects , Enamel Organ/physiology , GTP-Binding Protein Regulators/metabolism , Gene Expression Regulation, Developmental , Genes, Reporter , Mice , Mice, Inbred C57BL , Mice, Knockout , Signal Transduction/drug effects , Signal Transduction/genetics , Sodium Fluoride/pharmacology , Wnt Proteins/biosynthesis , Wnt Proteins/genetics , Wnt-5a Protein , beta Catenin/biosynthesis , beta Catenin/genetics , rho GTP-Binding Proteins/genetics , rho GTP-Binding Proteins/physiology , rhoA GTP-Binding Protein/genetics
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