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Osteoprotection Through the Deletion of the Transcription Factor Rorβ in Mice
Joshua N Farr1,2, Megan M Weivoda1,2, Kristy M Nicks1
1Department of Medicine, Division of Endocrinology, Mayo Clinic College of Medicine, Rochester, MN, USA.
Abstract:
There is a clinical need to identify new molecular targets for the treatment of osteoporosis, particularly those that simultaneously inhibit bone resorption while stimulating bone formation. We have previously shown in overexpression studies that retinoic acid receptor-related orphan receptor β (Rorβ) suppresses in vitro osteoblast differentiation. In addition, the expression of Rorβ is markedly increased in bone marrow-derived mesenchymal stromal cells with aging in both mice and humans. Here we establish a critical role for Rorβ in regulating bone metabolism using a combination of in vitro and in vivo studies. We used Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR)/Cas9 gene editing to demonstrate that loss of Rorβ in osteoblasts enhances Wnt signaling, specifically through increased recruitment of β-catenin to T-cell factor/lymphoid enhancer factor (Tcf/Lef) DNA binding sites in the promoters of the Wnt target genes Tcf7 and Opg. This resulted in increased osteogenic gene expression and suppressed osteoclast formation through increased osteoprotegerin (OPG) secretion in Rorβ-deficient cells. Consistent with our in vitro data, genetic deletion of Rorβ in both female and male mice resulted in preserved bone mass and microarchitecture with advancing age due to increased bone formation with a concomitant decrease in resorption. The improved skeletal phenotype in the Rorβ-/- mice was also associated with increased bone protein levels of TCF7 and OPG. These data demonstrate that loss of Rorβ has beneficial skeletal effects by increasing bone formation and decreasing bone resorption, at least in part through β-catenin-dependent activation of the Wnt pathway. Thus, inhibition of Rorβ represents a novel approach to potentially prevent or reverse osteoporosis. © 2017 American Society for Bone and Mineral Research.
Insights
Inhibition of retinoic acid receptor-related orphan receptor beta (Rorβ) boosts bone formation and reduces resorption. Loss of Rorβ in mice preserves bone mass and microarchitecture, offering a novel osteoporosis treatment target.
Area of Science:
- Bone Biology and Metabolism
- Molecular Endocrinology
- Regenerative Medicine
Background:
- Osteoporosis treatment requires targets that both inhibit bone resorption and stimulate bone formation.
- Retinoic acid receptor-related orphan receptor beta (Rorβ) expression increases with age in mesenchymal stromal cells.
- Previous studies indicated Rorβ suppresses osteoblast differentiation.
Purpose of the Study:
- To investigate the role of Rorβ in bone metabolism.
- To determine if Rorβ inhibition could be a therapeutic strategy for osteoporosis.
Main Methods:
- Utilized Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR)/Cas9 gene editing to create Rorβ-deficient osteoblasts.
- Conducted in vitro studies on osteoblast differentiation and Wnt signaling.
- Performed in vivo studies using Rorβ knockout mice (Rorβ-/-) to assess bone mass and microarchitecture.
Main Results:
- Loss of Rorβ in osteoblasts enhanced Wnt signaling via increased β-catenin recruitment to Tcf/Lef sites.
- Rorβ deficiency led to increased osteogenic gene expression and suppressed osteoclast formation through elevated osteoprotegerin (OPG) secretion.
- Rorβ knockout mice exhibited preserved bone mass and microarchitecture with age, showing increased bone formation and decreased resorption.
- Increased TCF7 and OPG protein levels were observed in Rorβ-/- mice.
Conclusions:
- Loss of Rorβ confers beneficial skeletal effects by promoting bone formation and reducing resorption, partly through β-catenin-dependent Wnt pathway activation.
- Inhibition of Rorβ represents a potential novel therapeutic approach for preventing or reversing osteoporosis.
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