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Aberrant perichondrial BMP signaling mediates multiple osteochondromagenesis in mice
Toshihiro Inubushi, Satoshi Nozawa, Kazu Matsumoto, Fumitoshi Irie, Yu Yamaguchi
Toshihiro Inubushi, Satoshi Nozawa, Kazu Matsumoto, Fumitoshi Irie, Yu Yamaguchi
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Research Article Bone biology

Aberrant perichondrial BMP signaling mediates multiple osteochondromagenesis in mice

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Abstract

Multiple hereditary exostoses (MHE) is characterized by the development of numerous benign bony tumors (osteochondromas). Although it has been well established that MHE is caused by mutations in EXT1 and EXT2, which encode glycosyltransferase essential for heparan sulfate (HS) biosynthesis, the cellular origin and molecular mechanisms of MHE remain elusive. Here, we show that in Ext1 mutant mice, osteochondromas develop from mesenchymal stem cell–like progenitor cells residing in the perichondrium, and we show that enhanced BMP signaling in these cells is the primary signaling defect that leads to osteochondromagenesis. We demonstrate that progenitor cells in the perichondrium, including those in the groove of Ranvier, highly express HS and that Ext1 ablation targeted to the perichondrium results in the development of osteochondromas. Ext1-deficient perichondrial progenitor cells show enhanced BMP signaling and increased chondrogenic differentiation both in vitro and in vivo. Consistent with the functional role for enhanced BMP signaling in osteochondromagenesis, administration of the small molecule BMP inhibitor LDN-193189 suppresses osteochondroma formation in two MHE mouse models. Together, our results demonstrate a role for enhanced perichondrial BMP signaling in osteochondromagenesis in mice, and they suggest the possibility of pharmacological treatment of MHE with BMP inhibitors.

Authors

Toshihiro Inubushi, Satoshi Nozawa, Kazu Matsumoto, Fumitoshi Irie, Yu Yamaguchi

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Figure 6

Role of aberrant BMP signaling in osteochondromagenesis in Fsp1-Ext1CKO mice.

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Role of aberrant BMP signaling in osteochondromagenesis in Fsp1-Ext1CKO ...
(A) BMP signaling is upregulated in the perichondrium of Fsp1-Ext1CKO mice. Frozen sections of a rib bone from P14 Fsp1-Ext1CKO and control (Ext1flox/flox; WT) littermates were double-labeled with anti-pSmad1/5/8 antibody (green) and TO-PRO-3 (blue). Broken lines depict the perichondrium/growth plate boundary. Areas indicated by rectangles are enlarged in neighboring panels. PC, perichondrium; GP, growth plate; M, muscle. Scale bar: 0.1 mm. (B and C) Effects of LDN-193189 treatment on osteochondromagenesis in Fsp1-Ext1CKO mice. Fsp1-Ext1CKO mice were treated with LDN-193189 as described in Methods. (B) Representative images of whole-mount skeletal preparations of the rib cage of LDN-193189- and vehicle-treated mice. A preparation of a WT mouse is shown for comparison (WT). Scale bar: 1 mm. (C) Quantitative assessment of the effect of LDN-193189 on the number of osteochondromas in rib bones, the length of the radius, and the body weight. Means ± SD (n = 8) are shown as horizontal bars. **P < 0.01, ***P < 0.001 by Student’s t test.

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