4.6 Article

WNT16 is Robustly Increased by Oncostatin M in Mouse Calvarial Osteoblasts and Acts as a Negative Feedback Regulator of Osteoclast Formation Induced by Oncostatin M

期刊

JOURNAL OF INFLAMMATION RESEARCH
卷 14, 期 -, 页码 4723-4741

出版社

DOVE MEDICAL PRESS LTD
DOI: 10.2147/JIR.S323435

关键词

oncostatin M; WNT16; osteoclast; osteoblast

资金

  1. Swedish Research Council
  2. Swedish government
  3. ALF-agreement in Gothenburg [237551, 238261, 226481]
  4. Swedish Foundation of Strategic Research
  5. IngaBritt and Arne Lundberg Foundation
  6. Torsten and Ragnar Soderberg's Foundation
  7. Knut and Alice Wallenberg Foundation
  8. Novo Nordisk Foundation
  9. Swedish Rheumatism Association
  10. Royal 80 Year Fund of King Gustav V
  11. County Council of Vasterbotten [2014/05283-3, 2015/00410-0]
  12. Sao Paulo Research Foundation (FAPESP)
  13. Coordenacao de Aperfeicoamento de Pessoal de Nivel Superior-Brasil (CAPES) [001, 061/2013 (PVE080/2012)]

向作者/读者索取更多资源

The study found that OSM is a robust stimulator of Wnt16 mRNA in calvarial osteoblasts. OSM-induced Wnt16 expression is dependent on gp130, OSM receptor, and the SHC1/STAT3 pathway. Wnt16 expression is significantly lower in bone marrow cells compared to calvarial osteoblasts.
Background: Bone loss is often observed adjacent to inflammatory processes. The WNT signaling pathways have been implicated as novel regulators of both immune responses and bone metabolism. WNT16 is important for cortical bone mass by inhibiting osteoclast differentiation, and we have here investigated the regulation of WNT16 by several members of the pro-inflammatory gp130 cytokine family. Methods: The expression and regulation of Wnt16 in primary murine cells were studied by qPCR, scRNAseq and in situ hybridization. Signaling pathways were studied by siRNA silencing. The importance of oncostatin M (OSM)-induced WNT16 expression for osteoclastogenesis was studied in cells from Wnt16-deficient and wild-type mice. Results: We found that IL-6/sIL-6R and OSM induce the expression of Wnt16 in primary mouse calvarial osteoblasts, with OSM being the most robust stimulator. The induction of Wnt16 by OSM was dependent on gp130 and OSM receptor (OSMR), and downstream signaling by the SHC1/STAT3 pathway, but independent of ERK. Stimulation of the calvarial cells with OSM resulted in enhanced numbers of mature, oversized osteoclasts when cells were isolated from Wnt16 deficient mice compared to cells from wild-type mice. OSM did not affect Wnt16 mRNA expression in bone marrow cell cultures, explained by the finding that Wnt16 and Osmr are expressed in distinctly different cells in bone marrow, nor was osteoclast differentiation different in OSM-stimulated bone marrow cell cultures isolated from Wnt16-/- or wild-type mice. Furthermore, we found that Wnt16 expression is substantially lower in cells from bone marrow compared to calvarial osteoblasts. Conclusion: These findings demonstrate that OSM is a robust stimulator of Wnt16 mRNA in calvarial osteoblasts and that WNT16 acts as a negative feedback regulator of OSMinduced osteoclast formation in the calvarial bone cells, but not in the bone marrow.

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