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Signaling networks in RUNX2‐dependent bone development

Journal of Cellular Biochemistry · 2010 · Vol. 112(3) · pp. 750–755
Toshihisa Komori

Abstract

RUNX2 is an essential transcription factor for osteoblast differentiation and chondrocyte maturation. SP7, another transcription factor, is required for osteoblast differentiation. Major signaling pathways, including FGF, Wnt, and IHH, also play important roles in skeletal development. RUNX2 regulates Sp7 expression at an early stage of osteoblast differentiation. FGF2 upregulates Runx2 expression and activates RUNX2, and gain-of-function mutations of FGFRs cause craniosynostosis and limb defect with upregulation of Runx2 expression. Wnt signaling upregulates Runx2 expression and activates RUNX2, and RUNX2 induces Tcf7 expression. IHH is required for Runx2 expression in osteoprogenitor cells during endochondral bone development, and RUNX2 directly regulates Ihh expression in chondrocytes. Thus, RUNX2 regulates osteoblast differentiation and chondrocyte maturation through the network with SP7 and with FGF, Wnt, and IHH signaling pathways during skeletal development.

Fibroblast Growth Factor ResearchConnective tissue disorders researchEpigenetics and DNA MethylationRUNX2OsteoblastChondrocyteWnt signaling pathwayEndochondral ossificationTranscription factorCell biologyFibroblast growth factorBiologySignal transduction

MeSH terms

Sp7 Transcription FactorAnimalsBone DevelopmentCell DifferentiationHumansOsteoblastsTranscription FactorsSignal TransductionReceptors, Fibroblast Growth FactorCore Binding Factor Alpha 1 SubunitWnt ProteinsHedgehog Proteins
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