Literature DB >> 10766877

Epidermal growth factor negatively regulates chondrogenesis of mesenchymal cells by modulating the protein kinase C-alpha, Erk-1, and p38 MAPK signaling pathways.

Y M Yoon1, C D Oh, D Y Kim, Y S Lee, J W Park, T L Huh, S S Kang, J S Chun.   

Abstract

During limb development, epithelial cells in the apical ectodermal ridge keep the underlying mesenchymal cells in a proliferative state preventing differentiation by secreting signaling molecules such as epidermal growth factor (EGF). We investigated the molecular mechanism of the EGF effect on the regulation of micromass culture-induced chondrogenesis of chick limb bud mesenchymal cells as a model system. We found that expression and tyrosine phosphorylation of the EGF receptor was increased transiently during chondrogenesis. Exogenous EGF inhibited chondrogenic differentiation of mesenchymal cells, and this effect was reversed by the EGF receptor inhibitor AG1478. EGF treatment also inhibited the expression and activation of protein kinase C-alpha, whereas it activated Erk-1 and inhibited p38 mitogen-activated protein kinase, all of which appeared to be involved in the EGF-induced inhibition of chondrogenesis. Stimulation of the EGF receptor blocked precartilage condensation and altered the expression of cell adhesion molecules such as N-cadherin and integrins alpha(5) and beta(1). All these EGF effects were reversible by AG1478. The data indicate that EGF negatively regulate chondrogenesis of chick limb bud mesenchymal cells by inhibiting precartilage condensation and by modulating signaling pathways including those of protein kinase C-alpha, Erk-1, and p38 mitogen-activated protein kinase.

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Year:  2000        PMID: 10766877     DOI: 10.1074/jbc.275.16.12353

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  15 in total

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2.  Mechanisms underlying the synergistic enhancement of self-assembled neocartilage treated with chondroitinase-ABC and TGF-β1.

Authors:  Donald J Responte; Boaz Arzi; Roman M Natoli; Jerry C Hu; Kyriacos A Athanasiou
Journal:  Biomaterials       Date:  2012-01-26       Impact factor: 12.479

3.  Osmotic stress induces terminal differentiation in cultured normal human epidermal keratinocytes.

Authors:  Thomas Mammone; Michael Ingrassia; Earl Goyarts
Journal:  In Vitro Cell Dev Biol Anim       Date:  2008-03-25       Impact factor: 2.416

4.  The critical role of the epidermal growth factor receptor in endochondral ossification.

Authors:  Xianrong Zhang; Valerie A Siclari; Shenghui Lan; Ji Zhu; Eiki Koyama; Holly L Dupuis; Motomi Enomoto-Iwamoto; Frank Beier; Ling Qin
Journal:  J Bone Miner Res       Date:  2011-11       Impact factor: 6.741

5.  Harnessing cell–biomaterial interactions for osteochondral tissue regeneration.

Authors:  Kyobum Kim; Diana M Yoon; Antonios Mikos; F Kurtis Kasper
Journal:  Adv Biochem Eng Biotechnol       Date:  2012       Impact factor: 2.635

6.  Sclerostin-erbB-3 interactions: modulation of erbB-3 activity by sclerostin.

Authors:  Theodore A Craig; Rajiv Kumar
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Authors:  Won Kil Lee; Seon Mi Yu; Seon Woo Cheong; Jong Kyung Sonn; Song Ja Kim
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Review 8.  Epidermal growth factor signalling pathway in endochondral ossification: an evidence-based narrative review.

Authors:  L Mangiavini; G M Peretti; B Canciani; N Maffulli
Journal:  Ann Med       Date:  2022-12       Impact factor: 4.709

9.  PKCε signalling activates ERK1/2, and regulates aggrecan, ADAMTS5, and miR377 gene expression in human nucleus pulposus cells.

Authors:  Emmanouella Tsirimonaki; Constantinos Fedonidis; Spiros G Pneumaticos; Adamantios A Tragas; Ioannis Michalopoulos; Dimitra Mangoura
Journal:  PLoS One       Date:  2013-11-28       Impact factor: 3.240

10.  Requirement for RAR-mediated gene repression in skeletal progenitor differentiation.

Authors:  Andrea D Weston; Roshantha A S Chandraratna; Joseph Torchia; T Michael Underhill
Journal:  J Cell Biol       Date:  2002-07-08       Impact factor: 10.539

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