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BMP‐2 Signaling and Mechanotransduction Synergize to Drive Osteogenic Differentiation via YAP/TAZ

Qiang Wei, Andrew W. Holle, Jie Li, Francesca Posa, Francesca Biagioni, Ottavio Croci, Amelie S. Benk, Jennifer L. Young, Fatima Noureddine, Jie Deng, Man Zhang, Gareth J. Inman, Joachim P. Spatz, Stefano Campaner, Elisabetta Ada Cavalcanti‐Adam

2020Advanced Science123 citationsDOIOpen Access PDF

Abstract

Growth factors and mechanical cues synergistically affect cellular functions, triggering a variety of signaling pathways. The molecular levels of such cooperative interactions are not fully understood. Due to its role in osteogenesis, the growth factor bone morphogenetic protein 2 (BMP-2) is of tremendous interest for bone regenerative medicine, osteoporosis therapeutics, and beyond. Here, contribution of BMP-2 signaling and extracellular mechanical cues to the osteogenic commitment of C2C12 cells is investigated. It is revealed that these two distinct pathways are integrated at the transcriptional level to provide multifactorial control of cell differentiation. The activation of osteogenic genes requires the cooperation of BMP-2 pathway-associated Smad1/5/8 heteromeric complexes and mechanosensitive YAP/TAZ translocation. It is further demonstrated that the Smad complexes remain bound onto and active on target genes, even after BMP-2 removal, suggesting that they act as a "molecular memory unit." Thus, synergistic stimulation with BMP-2 and mechanical cues drives osteogenic differentiation in a programmable fashion.

Topics & Concepts

SMADMechanotransductionCell biologyMechanosensitive channelsRegenerative medicineSignal transductionBone morphogenetic proteinBone morphogenetic protein 2ChemistryC2C12BMPR2Transforming growth factorBiologyStem cellGeneIn vitroMyocyteBiochemistryReceptorMyogenesisIon channelHippo pathway signaling and YAP/TAZCellular Mechanics and InteractionsTGF-β signaling in diseases
BMP‐2 Signaling and Mechanotransduction Synergize to Drive Osteogenic Differentiation via YAP/TAZ | Litcius