4.6 Article Proceedings Paper

β-catenin and BMP-2 synergize to promote osteoblast differentiation and new bone formation

期刊

JOURNAL OF CELLULAR BIOCHEMISTRY
卷 94, 期 2, 页码 403-418

出版社

WILEY
DOI: 10.1002/jcb.20253

关键词

cell-cell adhesion; mesenchymal differentiation; bone formation; adipogenesis

资金

  1. NIAMS NIH HHS [AR43470, AR07033, R01 AR051189-01, T32 AR007033, R03 AR048920, R03 AR048920-02, AR41255, R03 AR048920-01A1, R01 AR051189, R01 AR043470, R01 AR041255, AR32087] Funding Source: Medline

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Mutations of critical components of the Wnt pathway profoundly affect skeletal development and maintenance, probably via modulation of beta-catenin signaling. We tested the hypothesis that beta-catenin is involved in rnesenchyrnal lineage allocation to osteogenic cells using a beta-catenin mutant with constitutive transcriptional activity (DeltaN151). Although this stable beta-catenin had no effects by itself on osteogenic differentiation of multi potent embryonic cell lines, it synergized with bone morphogenetic protein-2 (BMP-2) resulting in dramatic stimulation of alkaline phosphatase activity, osteocalcin gene expression, and matrix mineralization. Likewise, DeltaN151 and BMP-2 synergistically stimulated new bone formation after subperiosteal injection in mouse calvaria in vivo. Conversely, DeltaN151 prevented adipogenic differentiation from pre-aclipocytic or uncommitted rnesenchyrnal cells in vitro. Intriguingly, the synergism with BMP-2 on gene transcription occurred without altering expression of Cbfa1/Runx2, suggesting actions independent or downstream of this osteoblast-specific transcription factor. Thus, P-catenin directs osteogenic lineage allocation by enhancing mesenchymal cell responsiveness to osteogenic factors, such as BMP-2, in part via Tcf/Lef dependent mechanisms. In vivo, this synergism leads to increased new bone formation. (C) 2004 Wiley-Liss, Inc.

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