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Tob deficiency superenhances osteoblastic activity after ovariectomy to block estrogen deficiency-induced
Michihiko Usui1, Yutaka Yoshida, Kunikazu Tsuji
1Department of Molecular Pharmacology, Medical Research Institute, Tokyo Medical and Dental University, 3-10 Kanda-Surugadai 2-Chome, Chiyoda-Ku, Tokyo 101-0062, Japan.
Abstract:
Tob (transducer of erbB2) is a member of antiproliferative family proteins and acts as a bone morphogenic protein inhibitor as well as a suppressor of proliferation in T cells, which have been implicated in postmenopausal bone loss. To determine the effect of Tob deficiency on estrogen deficiency-induced bone loss, we analyzed bone metabolism after ovariectomy or sham operation in Tob-deficient mice. Ovariectomy in WT mice decreased trabecular bone volume and bone mineral density (BMD) as expected. In Tob-deficient mice, ovariectomy reduced bone volume and BMD. However, even after ovariectomy, both trabecular bone volume and BMD levels in Tob-deficient bone were comparable to those in sham-operated WT bones. Bone formation parameters (mineral apposition rate and bone formation rate) in the ovariectomized Tob-deficient mice were significantly higher than those in the ovariectomized WT mice. In contrast, the ovariectomy-induced increase in the bone resorption parameters, osteoclast surface, and osteoclast number was similar between Tob-deficient mice and WT mice. Furthermore, in ex vivo nodule formation assay, ovariectomy-induced enhancement of nodule formation was significantly higher in the bone marrow cells from Tob-deficient mice than in the bone marrow cells from ovariectomized WT mice. Both Tob and estrogen signalings converge at bone morphogenic protein activation of alkaline phosphatase and GCCG-reporter gene expression in osteoblasts, revealing interaction between the two signals. These data indicate that Tob deficiency prevents ovariectomy-induced bone loss through the superenhancement of osteoblastic activities in bone and that this results in further augmentation in the bone formation rate and the mineral apposition rate after ovariectomy in vivo.
Insights
Tob deficiency prevents bone loss caused by estrogen deficiency. Tob-deficient mice show enhanced bone formation and mineral apposition rates, maintaining bone density after ovariectomy.
Area of Science:
- Bone Biology
- Endocrinology
- Cellular and Molecular Biology
Background:
- Transducer of erbB2 (Tob) is an antiproliferative protein implicated in T cell regulation.
- Postmenopausal bone loss is associated with estrogen deficiency.
- Tob's role in bone metabolism and its interaction with estrogen signaling were unclear.
Purpose of the Study:
- To investigate the effect of Tob deficiency on estrogen deficiency-induced bone loss.
- To analyze bone metabolism in Tob-deficient mice following ovariectomy.
- To elucidate the molecular mechanisms underlying Tob's influence on bone homeostasis.
Main Methods:
- Ovariectomy and sham operations were performed on wild-type (WT) and Tob-deficient mice.
- Bone metabolism was assessed by measuring trabecular bone volume and bone mineral density (BMD).
- Bone formation and resorption parameters were quantified, alongside an ex vivo bone marrow cell nodule formation assay.
Main Results:
- Ovariectomy decreased bone volume and BMD in WT mice, but Tob-deficient mice maintained comparable levels to sham-operated WT mice.
- Bone formation parameters (mineral apposition rate, bone formation rate) were significantly higher in ovariectomized Tob-deficient mice compared to WT mice.
- Osteoclast-mediated bone resorption was similar between groups, while osteoblastic activity was enhanced in Tob-deficient mice.
Conclusions:
- Tob deficiency prevents ovariectomy-induced bone loss by enhancing osteoblastic activity.
- This enhancement leads to increased bone formation and mineral apposition rates in Tob-deficient mice post-ovariectomy.
- Tob and estrogen signaling pathways converge on bone morphogenic protein activation in osteoblasts, highlighting a molecular interaction.
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