Division of Bone Diseases, Department of Rehabilitation and Geriatrics, World Health Organization Collaborating Center for Osteoporosis Prevention, Geneva University Hospital and Faculty of Medicine, Geneva 14, Switzerland.
Proc Natl Acad Sci U S A. 2012 Sep 11;109(37):15048-53. doi: 10.1073/pnas.1203085109. Epub 2012 Aug 27.
Periostin (Postn) is a matricellular protein preferentially expressed by osteocytes and periosteal osteoblasts in response to mechanical stimulation and parathyroid hormone (PTH). Whether and how periostin expression influences bone anabolism, however, remains unknown. We investigated the skeletal response of adult Postn(-/-) and Postn(+/+) mice to intermittent PTH. Compared with Postn(+/+), Postn(-/-) mice had a lower bone mass, cortical bone volume, and strength response to PTH. PTH-stimulated bone-forming indices were all significantly lower in Postn(-/-) mice, particularly at the periosteum. Furthermore, in vivo stimulation of Wnt-β-catenin signaling by PTH, as evaluated in TOPGAL reporter mice, was inhibited in the absence of periostin (TOPGAL;Postn(-/-) mice). PTH stimulated periostin and inhibited MEF2C and sclerostin (Sost) expression in bone and osteoblasts in vitro. Recombinant periostin also suppressed Sost expression, which was mediated through the integrin αVβ3 receptor, whereas periostin-blocking antibody prevented inhibition of MEF2C and Sost by PTH. In turn, administration of a Sost-blocking antiboby partially restored the PTH-mediated increase in bone mass in Postn(-/-) mice. In addition, primary osteoblasts from Postn(-/-) mice showed a lower proliferation, mineralization, and migration, both spontaneously and in response to PTH. Osteoblastic gene expression levels confirmed a defect of Postn(-/-) osteoblast differentiation with and without PTH, as well as an increased osteoblast apoptosis in the absence of periostin. These data elucidate the complex role of periostin on bone anabolism, through the regulation of Sost, Wnt-β-catenin signaling, and osteoblast differentiation.
骨纤连蛋白(Postn)是一种基质细胞蛋白,在骨细胞和成骨细胞受到机械刺激和甲状旁腺激素(PTH)刺激时优先表达。然而,骨纤连蛋白的表达是否以及如何影响骨合成代谢仍不清楚。我们研究了成年 Postn(-/-)和 Postn(+/+)小鼠对间歇性 PTH 的骨骼反应。与 Postn(+/+)相比,Postn(-/-)小鼠的骨量、皮质骨体积和对 PTH 的骨形成反应较低。Postn(-/-)小鼠的 PTH 刺激的成骨指数均显著降低,尤其是在骨膜处。此外,在缺乏骨纤连蛋白的情况下(TOPGAL;Postn(-/-)小鼠),PTH 对 Wnt-β-catenin 信号的体内刺激被抑制(TOPGAL 报告小鼠)。PTH 在体外刺激骨和成骨细胞中骨纤连蛋白的表达,并抑制 MEF2C 和 Sost 的表达。重组骨纤连蛋白也抑制 Sost 的表达,这是通过整合素 αVβ3 受体介导的,而骨纤连蛋白阻断抗体可防止 PTH 抑制 MEF2C 和 Sost 的表达。反过来,Sost 阻断抗体的给药部分恢复了 Postn(-/-)小鼠中 PTH 介导的骨量增加。此外,Postn(-/-)小鼠的原代成骨细胞显示出较低的增殖、矿化和迁移能力,无论是自发的还是对 PTH 的反应。成骨细胞基因表达水平证实了 Postn(-/-)成骨细胞分化的缺陷,无论是在有无 PTH 的情况下,以及在缺乏骨纤连蛋白的情况下,成骨细胞凋亡增加。这些数据阐明了骨纤连蛋白在骨合成代谢中的复杂作用,通过调节 Sost、Wnt-β-catenin 信号和成骨细胞分化。