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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >PTH receptor signaling in osteocytes governs periosteal bone formation and intracortical remodeling.
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PTH receptor signaling in osteocytes governs periosteal bone formation and intracortical remodeling.

机译:骨细胞中的PTH受体信号控制骨膜骨形成和皮层内重塑。

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摘要

The periosteal and endocortical surfaces of cortical bone dictate the geometry and overall mechanical properties of bone. Yet the cellular and molecular mechanisms that regulate activity on these surfaces are far from being understood. Parathyroid hormone (PTH) has profound effects in cortical bone, stimulating periosteal expansion and at the same time accelerating intracortical bone remodeling. We report herein that transgenic mice expressing a constitutive active PTH receptor in osteocytes (DMP1-caPTHR1 mice) exhibit increased cortical bone area and an elevated rate of periosteal and endocortical bone formation. In addition, DMP1-caPTHR1 mice display a marked increase in intracortical remodeling and cortical porosity. Crossing DMP1-caPTHR1 mice with mice lacking the Wnt coreceptor, LDL-related receptor 5 (LRP5), or with mice overexpressing the Wnt antagonist Sost in osteocytes (DMP1-Sost mice) reduced or abolished, respectively, the increased cortical bone area, periosteal bone formation rate, and expression of osteoblast markers and Wnt target genes exhibited by the DMP1-caPTHR1 mice. In addition, DMP1-caPTHR1 lacking LRP5 or double transgenic DMP1-caPTHR1;DMP1-Sost mice exhibit exacerbated intracortical remodeling and increased osteoclast numbers, and markedly decreased expression of the RANK decoy receptor osteoprotegerin. Thus, whereas Sost downregulation and the consequent Wnt activation is required for the stimulatory effect of PTH receptor signaling on periosteal bone formation, the Wnt-independent increase in osteoclastogenesis induced by PTH receptor activation in osteocytes overrides the effect on Sost. These findings demonstrate that PTH receptor signaling influences cortical bone through actions on osteocytes and defines the role of Wnt signaling in PTH receptor action.
机译:皮质骨的骨膜和皮质内表面决定了骨的几何形状和整体机械性能。然而,调节这些表面上的活性的细胞和分子机制尚不清楚。甲状旁腺激素(PTH)在皮质骨中具有深远的影响,刺激骨膜的扩张,同时促进皮质内骨的重塑。我们在这里报告说,在骨细胞中表达组成型活性PTH受体的转基因小鼠(DMP1-caPTHR1小鼠)表现出皮质骨面积增加以及骨膜和皮质内骨形成率升高。此外,DMP1-caPTHR1小鼠在皮质内重构和皮质孔隙率上显示出明显的增加。将DMP1-caPTHR1小鼠与缺乏Wnt核心受体,LDL相关受体5(LRP5)的小鼠或过表达Wnt拮抗剂Sost的小鼠骨细胞杂交(DMP1-Sost小鼠)减少或消失,分别是皮质骨面积增加,骨膜增加DMP1-caPTHR1小鼠表现出的骨形成速率以及成骨细胞标志物和Wnt靶基因的表达。此外,缺少LRP5或双转基因DMP1-caPTHR1的DMP1-caPTHR1; DMP1-Sost小鼠表现出加剧的皮层内重塑和破骨细胞数量增加,并显着降低RANK诱饵受体骨保护素的表达。因此,尽管PTH受体信号传导对骨膜骨形成的刺激作用需要Sost下调和随之而来的Wnt激活,但由PTH受体激活引起的破骨细胞中Wnt依赖性破骨细胞生成的独立于Sst的作用。这些发现表明,PTH受体信号传导通过对骨细胞的作用影响皮质骨,并定义了Wnt信号在PTH受体作用中的作用。

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