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Mechanical strain-mediated reduction in RANKL expression is associated with RUNX2 and BRD2.
Galea, Gabriel L; Paradise, Christopher R; Meakin, Lee B; Camilleri, Emily T; Taipaleenmaki, Hanna; Stein, Gary S; Lanyon, Lance E; Price, Joanna S; van Wijnen, Andre J; Dudakovic, Amel.
Afiliação
  • Galea GL; Department of Orthopedic Surgery, Mayo Clinic, Rochester, MN, USA.
  • Paradise CR; Developmental Biology and Cancer, UCL GOS Institute of Child Health, London, UK.
  • Meakin LB; Comparative Bioveterinary Sciences, Royal Veterinary College, London, UK.
  • Camilleri ET; Mayo Clinic Graduate School of Biomedical Sciences, Mayo Clinic, Rochester, MN, USA.
  • Taipaleenmaki H; Center for Regenerative Medicine, Mayo Clinic, Rochester, MN, USA.
  • Stein GS; School of Veterinary Sciences, University of Bristol, Bristol, UK.
  • Lanyon LE; Department of Orthopedic Surgery, Mayo Clinic, Rochester, MN, USA.
  • Price JS; Molecular Skeletal Biology Laboratory, Department of Trauma, Hand and Reconstructive Surgery, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
  • van Wijnen AJ; Department of Biochemistry, University of Vermont College of Medicine, Burlington, VT, USA.
  • Dudakovic A; School of Veterinary Sciences, University of Bristol, Bristol, UK.
Gene X ; 5: 100027, 2020 Dec.
Article em En | MEDLINE | ID: mdl-32550554
ABSTRACT
Mechanical loading-related strains trigger bone formation by osteoblasts while suppressing resorption by osteoclasts, uncoupling the processes of formation and resorption. Osteocytes may orchestrate this process in part by secreting sclerostin (SOST), which inhibits osteoblasts, and expressing receptor activator of nuclear factor-κB ligand (RANKL/TNFSF11) which recruits osteoclasts. Both SOST and RANKL are targets of the master osteoblastic transcription factor RUNX2. Subjecting human osteoblastic Saos-2 cells to strain by four point bending down-regulates their expression of SOST and RANKL without altering RUNX2 expression. RUNX2 knockdown increases basal SOST expression, but does not alter SOST down-regulation following strain. Conversely, RUNX2 knockdown does not alter basal RANKL expression, but prevents its down-regulation by strain. Chromatin immunoprecipitation revealed RUNX2 occupies a region of the RANKL promoter containing a consensus RUNX2 binding site and its occupancy of this site decreases following strain. The expression of epigenetic acetyl and methyl writers and readers was quantified by RT-qPCR to investigate potential epigenetic bases for this change. Strain and RUNX2 knockdown both down-regulate expression of the bromodomain acetyl reader BRD2. BRD2 and RUNX2 co-immunoprecipitate, suggesting interaction within regulatory complexes, and BRD2 was confirmed to interact with the RUNX2 promoter. BRD2 also occupies the RANKL promoter and its occupancy was reduced following exposure to strain. Thus, RUNX2 may contribute to bone remodeling by suppressing basal SOST expression, while facilitating the acute strain-induced down-regulation of RANKL through a mechanosensitive epigenetic loop involving BRD2.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2020 Tipo de documento: Article