首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Tob deficiency superenhances osteoblastic activity after ovariectomy to block estrogen deficiency-induced osteoporosis
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Tob deficiency superenhances osteoblastic activity after ovariectomy to block estrogen deficiency-induced osteoporosis

机译:Tob缺乏症可增强卵巢切除后的成骨细胞活性,从而阻断雌激素缺乏症引起的骨质疏松

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摘要

Tob (transducer of erbB2) is a member of anti proliferative 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 BIVID. However, even after ovariectomy, both trabecular bone volume and BIVID 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 ovariectornized 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 osteolblasts, revealing interaction between the two signals. These data indicate that Tob deficiency prevents ovariectomyinduced 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.
机译:Tob(erbB2的转导子)是抗增殖家族蛋白的成员,并充当骨形态发生蛋白抑制剂以及T细胞增殖抑制剂,这与绝经后骨质流失有关。为了确定Tob缺乏对雌激素缺乏引起的骨丢失的影响,我们分析了Tob缺乏小鼠卵巢切除或假手术后的骨代谢。如预期的那样,WT小鼠的卵巢切除术降低了小梁的骨体积和骨矿物质密度(BMD)。在Tob缺陷小鼠中,卵巢切除术减少了骨体积和BIVID。然而,即使在卵巢切除术后,Tob缺乏骨中的小梁骨体积和BIVID水平也与假手术WT骨中的小梁骨体积和BIVID水平相当。去卵巢Tob缺陷小鼠的骨形成参数(矿物质附着率和骨形成率)显着高于去卵巢WT小鼠。相反,在Tob缺陷小鼠和WT小鼠之间,卵巢切除术引起的骨吸收参数,破骨细胞表面和破骨细胞数量增加相似。此外,在离体结节形成试验中,卵巢切除术诱导的结节形成增强在Tob缺陷小鼠的骨髓细胞中明显高于在卵巢切除的WT小鼠的骨髓细胞中。 Tob和雌激素信号转导都集中在成骨细胞中碱性磷酸酶的骨形态发生蛋白激活和GCCG-reporter基因表达上,揭示了这两个信号之间的相互作用。这些数据表明,Tob缺乏症通过增强骨中成骨细胞的活性来防止卵巢切除术引起的骨丢失,并且这导致体内卵巢切除术后骨形成率和矿物质沉积率进一步增加。

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