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Media type:
E-Article
Title:
R-spondin 3 deletion induces Erk phosphorylation to enhance Wnt signaling and promote bone formation in the appendicular skeleton
Contributor:
Nagano, Kenichi;
Yamana, Kei;
Saito, Hiroaki;
Kiviranta, Riku;
Pedroni, Ana Clara;
Raval, Dhairya;
Niehrs, Christof;
Gori, Francesca;
Baron, Roland
imprint:
eLife Sciences Publications, Ltd, 2022
Published in:eLife
Language:
English
DOI:
10.7554/elife.84171
ISSN:
2050-084X
Origination:
Footnote:
Description:
<jats:p>Activation of Wnt signaling leads to high bone density. The R-spondin family of four secreted glycoproteins (Rspo1-4) amplifies Wnt signaling. In humans, RSPO3 variants are strongly associated with bone density. Here, we investigated the role of Rspo3 in skeletal homeostasis in mice. Using a comprehensive set of mouse genetic and mechanistic studies, we show that in the appendicular skeleton, <jats:italic>Rspo3</jats:italic> haplo-insufficiency and <jats:italic>Rspo3</jats:italic> targeted deletion in <jats:italic>Runx2<jats:sup>+</jats:sup></jats:italic> osteoprogenitors lead to an increase in trabecular bone mass, with increased number of osteoblasts and bone formation. In contrast and highlighting the complexity of Wnt signaling in the regulation of skeletal homeostasis, we show that <jats:italic>Rspo3</jats:italic> deletion in osteoprogenitors results in the opposite phenotype in the axial skeleton, i.e., low vertebral trabecular bone mass. Mechanistically, <jats:italic>Rspo3</jats:italic> deficiency impairs the inhibitory effect of Dkk1 on Wnt signaling activation and bone mass. We demonstrate that <jats:italic>Rspo3</jats:italic> deficiency leads to activation of Erk signaling which in turn, stabilizes β-catenin and Wnt signaling activation. Our data demonstrate that <jats:italic>Rspo3</jats:italic> haplo-insufficiency/deficiency boosts canonical Wnt signaling by activating Erk signaling, to favor osteoblastogenesis, bone formation, and bone mass.</jats:p>