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Updated: Apr 9, 2026

Stimulation of Notch Signaling in Mouse Osteoclast Precursors
Published on: February 28, 2017
Wnt16 regulates osteoclast differentiation in conjunction with Wnt5a
Yasuhiro Kobayashi1, Gnanasagar J Thirukonda1, Yukio Nakamura2
1Institute for Oral Science, Matsumoto Dental University, Nagano 399-0781, Japan.
Abstract:
The canonical Wnt/β-catenin signaling pathway in osteoblast-lineage cells inhibits osteoclastogenesis through the expression of osteoprotegerin (Opg), a decoy receptor of receptor activator of Nf-κb (Rank) ligands. Wnt5a, a typical non-canonical Wnt ligand, enhances the expression of Rank in osteoclast precursors, which, in turn, promotes the Rank ligand (Rankl)-induced formation of osteoclasts. In contrast, Wnt16 and Wnt4 have been shown to inhibit the Rankl-induced formation of osteoclasts through non-canonical Wnt signals. However, the relationships among these Wnt ligands in osteoclastogenesis remained to be elucidated. We herein showed that Wnt16, but not Wnt4, inhibited the Rankl-induced osteoclastogenesis in bone marrow-derived macrophage (BMM) cultures. Wnt3a and Wnt4 inhibited the 1α,25-dihydroxy vitamin D3 (1,25D3)-induced osteoclastogenesis in co-cultures prepared from wild-type mice, but not in those from Opg(-/-) nice. Wnt16 inhibited the 1,25D3-induced formation of osteoclasts in both wild-type and Opg(-/-) co-cultures. Wnt16, Wnt4, and Wnt3a failed to inhibit the pit-forming activity of osteoclasts. Wnt16 failed to inhibit the Wnt5a-induced expression of Rank in osteoclast precursors. In contrast, Wnt5a abrogated the inhibitory effects of Wnt16 on Rankl-induced osteoclastogenesis. These results suggested that Wnt16 inhibited osteoclastogenesis, but not the function of osteoclasts and that Wnt16, an inhibitory Wnt ligand for osteoclastogenesis, regulates bone resorption in conjunction with Wnt5a.
Insights
Wnt16 inhibits osteoclast formation, a key process in bone resorption. However, Wnt5a can counteract this effect, suggesting a complex interplay in regulating bone metabolism.
Area of Science:
- Bone Biology
- Cell Signaling
- Endocrinology
Background:
- Canonical Wnt/β-catenin signaling inhibits osteoclastogenesis via osteoprotegerin (Opg).
- Non-canonical Wnt ligands like Wnt5a promote osteoclast formation by enhancing receptor activator of NF-κB (Rank) expression.
- Wnt16 and Wnt4 are known to inhibit osteoclastogenesis through non-canonical pathways, but their interactions are unclear.
Purpose of the Study:
- To elucidate the distinct roles of Wnt16, Wnt4, and Wnt3a in osteoclastogenesis.
- To investigate the interplay between Wnt16 and Wnt5a in regulating osteoclast formation and function.
Main Methods:
- Bone marrow-derived macrophage (BMM) cultures to assess osteoclastogenesis.
- Co-cultures from wild-type and Opg(-/-) mice to evaluate Wnt ligand effects.
- Assays for pit-forming activity to measure osteoclast function.
- Analysis of Rank expression in osteoclast precursors.
Main Results:
- Wnt16, but not Wnt4, inhibited receptor activator of NF-κB ligand (Rankl)-induced osteoclastogenesis in BMM cultures.
- Wnt3a and Wnt4 inhibited 1α,25-dihydroxy vitamin D3 (1,25D3)-induced osteoclastogenesis in wild-type, but not Opg(-/-), co-cultures.
- Wnt16 inhibited 1,25D3-induced osteoclastogenesis in both wild-type and Opg(-/-) co-cultures.
- Wnt16, Wnt4, and Wnt3a did not inhibit osteoclast pit-forming activity.
- Wnt5a abrogated Wnt16's inhibitory effect on Rankl-induced osteoclastogenesis and did not affect Wnt5a-induced Rank expression.
Conclusions:
- Wnt16 inhibits osteoclastogenesis but not osteoclast function.
- Wnt16's role in bone resorption is modulated by Wnt5a, indicating a complex regulatory mechanism.
- These findings highlight Wnt16 as a key inhibitory Wnt ligand in osteoclastogenesis, interacting with Wnt5a to control bone resorption.
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