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Skeletal Phenotype Analysis of a Conditional Stat3 Deletion Mouse Model
Published on: July 3, 2020
Swiprosin-1 Negatively Regulates Osteoclast Differentiation and Bone Resorption via Akt/MAPK/NF-κB Pathway and αvβ3
Yoon-Hee Cheon1, Sung Chul Kwak1, Chong Hyuk Chung1,2
1Musculoskeletal and Immune Disease Research Institute, School of Medicine, Wonkwang University, Iksan 54538, Republic of Korea.
Abstract:
Swiprosin-1 (SWS1/EFhd2) is a calcium-binding adaptor protein involved in cytoskeletal regulation, but its physiological role in bone homeostasis remains largely undefined. To elucidate its function in osteoclast biology, we examined SWS1 expression and activity during osteoclastogenesis using primary murine bone marrow-derived macrophages, siRNA-mediated knockdown, and SWS1 knockout (KO) mice. SWS1 was predominantly localized to the nucleus in precursor cells and redistributed to the F-actin ring in mature osteoclasts. Receptor activator of nuclear factor-kappa B ligand stimulation significantly downregulated SWS1 mRNA expression. Loss of SWS1 enhanced osteoclast formation, F-actin ring integrity, and bone resorption, accompanied by elevated expression of osteoclastogenic markers. In vivo, male SWS1 KO mice exhibited deteriorated trabecular bone microarchitecture with increased osteoclast numbers. Mechanistically, SWS1 deficiency intensified αvβ3 integrin-associated cytoskeletal signaling and upregulated Akt, MAPK, NF-κB, and PLCγ2 pathways. These results indicate that SWS1 negatively regulates osteoclast differentiation and function by restraining cytoskeletal reorganization and downstream signaling. Collectively, our findings establish SWS1 as a novel modulator of osteoclast activity and a potential therapeutic target for osteolytic bone disorders.
Insights
Swiprosin-1 (SWS1) negatively regulates osteoclast formation and bone resorption. Loss of SWS1 in mice leads to impaired bone structure and increased osteoclast activity, suggesting SWS1 as a therapeutic target for bone disorders.
Area of Science:
- Cell Biology
- Bone Biology
- Molecular Biology
Background:
- Swiprosin-1 (SWS1/EFhd2) is a calcium-binding protein involved in cytoskeletal regulation.
- Its specific role in bone homeostasis and osteoclast biology is not well understood.
Purpose of the Study:
- To investigate the function of SWS1 in osteoclast differentiation and bone resorption.
- To determine the molecular mechanisms underlying SWS1's role in osteoclast biology.
Main Methods:
- Examined SWS1 expression during osteoclastogenesis in murine bone marrow-derived macrophages.
- Utilized siRNA-mediated knockdown and SWS1 knockout (KO) mouse models.
- Assessed osteoclast formation, F-actin ring integrity, bone resorption, and signaling pathways.
Main Results:
- SWS1 localized to the nucleus in precursors and the F-actin ring in mature osteoclasts.
- SWS1 deficiency enhanced osteoclast formation, bone resorption, and osteoclastogenic markers.
- SWS1 KO mice showed deteriorated bone microarchitecture and increased osteoclast numbers.
- SWS1 loss upregulated αvβ3 integrin signaling, Akt, MAPK, NF-κB, and PLCγ2 pathways.
Conclusions:
- SWS1 acts as a negative regulator of osteoclast differentiation and function.
- SWS1 restrains cytoskeletal reorganization and downstream signaling pathways in osteoclasts.
- SWS1 is a potential therapeutic target for osteolytic bone disorders.
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