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Osteoclast-specific cathepsin K deletion stimulates S1P-dependent bone formation
Sutada Lotinun, … , William C. Horne, Roland Baron
Sutada Lotinun, … , William C. Horne, Roland Baron
Published January 16, 2013
Citation Information: J Clin Invest. 2013;123(2):666-681. https://doi.org/10.1172/JCI64840.
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Research Article Bone biology

Osteoclast-specific cathepsin K deletion stimulates S1P-dependent bone formation

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Abstract

Cathepsin K (CTSK) is secreted by osteoclasts to degrade collagen and other matrix proteins during bone resorption. Global deletion of Ctsk in mice decreases bone resorption, leading to osteopetrosis, but also increases the bone formation rate (BFR). To understand how Ctsk deletion increases the BFR, we generated osteoclast- and osteoblast-targeted Ctsk knockout mice using floxed Ctsk alleles. Targeted ablation of Ctsk in hematopoietic cells, or specifically in osteoclasts and cells of the monocyte-osteoclast lineage, resulted in increased bone volume and BFR as well as osteoclast and osteoblast numbers. In contrast, targeted deletion of Ctsk in osteoblasts had no effect on bone resorption or BFR, demonstrating that the increased BFR is osteoclast dependent. Deletion of Ctsk in osteoclasts increased their sphingosine kinase 1 (Sphk1) expression. Conditioned media from Ctsk-deficient osteoclasts, which contained elevated levels of sphingosine-1-phosphate (S1P), increased alkaline phosphatase and mineralized nodules in osteoblast cultures. An S1P1,3 receptor antagonist inhibited these responses. Osteoblasts derived from mice with Ctsk-deficient osteoclasts had an increased RANKL/OPG ratio, providing a positive feedback loop that increased the number of osteoclasts. Our data provide genetic evidence that deletion of CTSK in osteoclasts enhances bone formation in vivo by increasing the generation of osteoclast-derived S1P.

Authors

Sutada Lotinun, Riku Kiviranta, Takuma Matsubara, Jorge A. Alzate, Lynn Neff, Anja Lüth, Ilpo Koskivirta, Burkhard Kleuser, Jean Vacher, Eero Vuorio, William C. Horne, Roland Baron

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Figure 13

Schematic representation of bone remodeling and the coupling process in controls and Ctsk-deficient mice.

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Schematic representation of bone remodeling and the coupling process in ...
(A) Under normal circumstance, osteoclasts secrete clastokines, including osteoanabolic factors such as S1P, for the regulation of bone formation. Additionally, osteoclasts resorb bone, thus releasing MDGFs to enhance bone formation. (B) Absence of cathepsin K increases S1P released by osteoclasts and may increase intact MDGFs (11). Furthermore, S1P induces an increase in the production of RANKL by osteoblasts (20), leading to increased osteoclast differentiation. An overall increase in the level of S1P stimulates bone formation. OC-pre, osteoclast precursor.

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