Surface topography is a context-dependent activator of TGF-β signaling in mesenchymal stem cells

Author:

Vermeulen StevenORCID,Roumans Nadia,Honig Floris,Carlier AurélieORCID,Hebels Dennie G.A.J.ORCID,Dede Eren AysegulORCID,ten Dijke PeterORCID,Vasilevich AliakseiORCID,de Boer JanORCID

Abstract

AbstractWe previously found that surface topographies induce the expression of theScxagene, encoding Scleraxis in tenocytes. BecauseScxais a TGF-β responsive gene, we investigated the link between mechanotransduction and TGF-β signaling. We discovered that mesenchymal stem cells exposed to both micro-topographies and TGF-β2 display synergistic induction of SMAD phosphorylation and transcription of the TGF-β target genesSCXA,a-SMA, andSOX9. Pharmacological perturbations revealed that Rho/ROCK/SRF signaling is required for this synergistic response. We further found an activation of the early response genesSRFandEGR1during the early adaptation phase on micro-topographies, which coincided with higher expression of the TGF-β type-II receptor gene. Of interest, PKC activators Prostratin and Ingenol-3, known for inducing actin reorganization and activation of serum response elements, were able to mimic the topography-induced TGF-β response. These findings provide novel insights into the convergence of mechanobiology and TGF-β signaling, which can lead to improved culture protocols and therapeutic applications.

Publisher

Cold Spring Harbor Laboratory

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