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Stimulation of Notch Signaling in Mouse Osteoclast Precursors
Published on: February 28, 2017
Connective tissue growth factor is a target of notch signaling in cells of the osteoblastic lineage
Ernesto Canalis1, Stefano Zanotti1, Anna Smerdel-Ramoya2
1Department of Research, Saint Francis Hospital and Medical Center, Hartford, CT, 06105; The University of Connecticut School of Medicine, Farmington, CT, 06030.
Abstract:
Connective tissue growth factor (Ctgf) or CCN2 is a protein synthesized by osteoblasts necessary for skeletal homeostasis, although its overexpression inhibits osteogenic signals and bone formation. Ctgf is induced by bone morphogenetic proteins, transforming growth factor β and Wnt; and in the present studies, we explored whether Notch regulated Ctgf expression in osteoblasts. We employed Rosa(Notch) mice, where the Notch intracellular domain (NICD) is expressed following the excision of a STOP cassette, placed between the Rosa26 promoter and NICD. Notch was activated by transduction of adenoviral vectors expressing Cre recombinase (Ad-CMV-Cre). Notch induced Ctgf mRNA levels in a time dependent manner and increased Ctgf heterogeneous nuclear RNA. Notch also destabilized Ctgf mRNA shortening its half-life from 13h to 3h. The effect of Notch on Ctgf expression was lost following Rbpjκ downregulation, demonstrating that it was mediated by Notch canonical signaling. However, downregulation of the classic Notch target genes Hes1, Hey1 and Hey2 did not modify the effect of Notch on Ctgf expression. Wild type osteoblasts exposed to immobilized Delta-like 1 displayed enhanced Notch signaling and increased Ctgf expression. In addition to the effects of Notch in vitro, Notch induced Ctgf in vivo, and calvariae and femurs from Rosa(Notch) mice mated with transgenics expressing the Cre recombinase in cells of the osteoblastic lineage exhibited increased expression of Ctgf. In conclusion, Ctgf is a target of Notch canonical signaling in osteoblasts, and may act in concert with Notch to regulate skeletal homeostasis.
Insights
Notch signaling regulates connective tissue growth factor (Ctgf) expression in osteoblasts, impacting skeletal homeostasis. This study reveals Ctgf as a target of Notch canonical signaling in bone cells.
Area of Science:
- Cell Biology
- Molecular Biology
- Skeletal Biology
Background:
- Connective tissue growth factor (Ctgf/CCN2) is crucial for skeletal homeostasis but its overexpression impairs bone formation.
- Bone morphogenetic proteins, TGF-β, and Wnt pathways induce Ctgf.
- The role of Notch signaling in regulating Ctgf expression in osteoblasts was unexplored.
Purpose of the Study:
- To investigate whether Notch signaling regulates Ctgf expression in osteoblasts.
- To elucidate the mechanism of Notch-mediated Ctgf regulation.
Main Methods:
- Utilized Rosa(Notch) mice for inducible Notch intracellular domain (NICD) expression.
- Activated Notch signaling via adenoviral Cre recombinase (Ad-CMV-Cre).
- Assessed Ctgf mRNA and heterogeneous nuclear RNA levels, and mRNA half-life; employed Rbpjκ and Hes1/Hey1/Hey2 downregulation; used immobilized Delta-like 1 stimulation; analyzed calvariae and femurs from genetically modified mice.
Main Results:
- Notch activation increased Ctgf mRNA levels and heterogeneous nuclear RNA in a time-dependent manner.
- Notch destabilized Ctgf mRNA, reducing its half-life from 13h to 3h.
- Notch-induced Ctgf expression was dependent on Rbpjκ, indicating canonical Notch signaling, but independent of Hes1/Hey1/Hey2.
- Notch signaling enhanced Ctgf expression both in vitro (osteoblasts) and in vivo (mouse calvariae and femurs).
Conclusions:
- Ctgf is a direct target of Notch canonical signaling in osteoblasts.
- Notch signaling positively regulates Ctgf expression in bone cells.
- Ctgf may function in conjunction with Notch signaling to maintain skeletal homeostasis.
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