Literature DB >> 25558817

Fibroblast growth factor and canonical WNT/β-catenin signaling cooperate in suppression of chondrocyte differentiation in experimental models of FGFR signaling in cartilage.

Marcela Buchtova1, Veronika Oralova2, Anie Aklian3, Jan Masek4, Iva Vesela5, Zhufeng Ouyang6, Tereza Obadalova7, Zaneta Konecna7, Tereza Spoustova4, Tereza Pospisilova4, Petr Matula8, Miroslav Varecha7, Lukas Balek4, Iva Gudernova7, Iva Jelinkova7, Ivan Duran9, Iveta Cervenkova7, Shunichi Murakami6, Alois Kozubik10, Petr Dvorak7, Vitezslav Bryja10, Pavel Krejci11.   

Abstract

Aberrant fibroblast growth factor (FGF) signaling disturbs chondrocyte differentiation in skeletal dysplasia, but the mechanisms underlying this process remain unclear. Recently, FGF was found to activate canonical WNT/β-catenin pathway in chondrocytes via Erk MAP kinase-mediated phosphorylation of WNT co-receptor Lrp6. Here, we explore the cellular consequences of such a signaling interaction. WNT enhanced the FGF-mediated suppression of chondrocyte differentiation in mouse limb bud micromass and limb organ cultures, leading to inhibition of cartilage nodule formation in micromass cultures, and suppression of growth in cultured limbs. Simultaneous activation of the FGF and WNT/β-catenin pathways resulted in loss of chondrocyte extracellular matrix, expression of genes typical for mineralized tissues and alteration of cellular shape. WNT enhanced the FGF-mediated downregulation of chondrocyte proteoglycan and collagen extracellular matrix via inhibition of matrix synthesis and induction of proteinases involved in matrix degradation. Expression of genes regulating RhoA GTPase pathway was induced by FGF in cooperation with WNT, and inhibition of the RhoA signaling rescued the FGF/WNT-mediated changes in chondrocyte cellular shape. Our results suggest that aberrant FGF signaling cooperates with WNT/β-catenin in suppression of chondrocyte differentiation.
Copyright © 2014 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Cartilage; Chondrocyte; Differentiation; FGFR3; Fibroblast growth factor receptor; WNT

Mesh:

Substances:

Year:  2015        PMID: 25558817     DOI: 10.1016/j.bbadis.2014.12.020

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  23 in total

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