Department of Orthopedics, Shanxi Key Laboratory of Bone and Soft Tissue Injury Repair, The Second Hospital of Shanxi Medical University, Taiyuan, Shanxi, China.
Shanxi Bethune Hospital, Shanxi Academy of Medical Sciences, Tongji Shanxi Hospital, Third Hospital of Shanxi Medical University, Taiyuan, Shanxi, China.
Calcif Tissue Int. 2022 Nov;111(5):519-534. doi: 10.1007/s00223-022-00999-5. Epub 2022 Jun 22.
Indian hedgehog (Ihh) is an indispensable paracrine factor for proper tissue patterning, skeletogenesis, and cellular proliferation. Recent genetic studies have revealed critical roles of chondrocyte-derived Ihh in regulating chondrocyte proliferation, hypertrophy and cartilage ossification. However, the functions of Sp7-expressing cell-derived Ihh in osteoblast differentiation and bone formation remain unclear. Sp7 is an essential transcription factor for osteoblast differentiation. In the current study, we generated Sp7-iCre; Ihh mice, in which the Ihh gene was specifically deleted in Sp7-expressing cells to investigate the roles of Ihh. Ihh ablation in Sp7-expressing cells resulted in a dwarfism phenotype with severe skeletal dysplasia and lethality at birth, but with normal joint segmentation. Sp7-iCre; Ihh mice had fewer osteoblasts, almost no cortical and trabecular bones, smaller skulls, and wider cranial sutures. Additionally, the levels of osteogenesis- and angiogenesis-related genes, and of major bone matrix protein genes were significantly reduced. These results demonstrated that Ihh regulates bone formation in Sp7-expressing cells. Ihh deficiency in primary osteoblasts cultured in vitro inhibited their proliferation, differentiation, and mineralization ability, and reduced the expression of osteogenesis-related genes. Moreover, the deletion of Ihh also attenuated the Bmp2/Smad/Runx2 pathway in E18.5 tibial and primary osteoblasts. The activity of primary osteoblasts in mutant mice was rescued after treatment with rhBMP2. In summary, our data revealed that Ihh in Sp7-expressing cells plays an indispensable role in osteoblast differentiation, mineralization, and embryonic osteogenesis, further implicated that its pro-osteogenic role may be mediated through the canonical Bmp2/Smad/Runx2 pathway.
印度刺猬(Ihh)是组织模式形成、骨骼发生和细胞增殖所必需的旁分泌因子。最近的遗传研究表明,软骨细胞衍生的 Ihh 在调节软骨细胞增殖、肥大和软骨骨化中起着关键作用。然而,Sp7 表达细胞衍生的 Ihh 在成骨细胞分化和骨形成中的功能仍不清楚。Sp7 是成骨细胞分化的必需转录因子。在本研究中,我们生成了 Sp7-iCre; Ihh 小鼠,其中 Ihh 基因在 Sp7 表达细胞中特异性缺失,以研究 Ihh 的作用。Sp7 表达细胞中 Ihh 的缺失导致矮小症表型,出生时骨骼发育严重畸形和致死,但关节分段正常。Sp7-iCre; Ihh 小鼠的成骨细胞较少,几乎没有皮质骨和小梁骨,头骨较小,颅缝较宽。此外,成骨和血管生成相关基因以及主要骨基质蛋白基因的水平显著降低。这些结果表明 Ihh 在 Sp7 表达细胞中调节骨形成。体外培养的原代成骨细胞中 Ihh 的缺失抑制了其增殖、分化和矿化能力,并降低了成骨相关基因的表达。此外,Ihh 的缺失也减弱了 E18.5 胫骨和原代成骨细胞中的 Bmp2/Smad/Runx2 通路。突变小鼠原代成骨细胞的活性在 rhBMP2 处理后得到恢复。总之,我们的数据表明 Sp7 表达细胞中的 Ihh 在成骨细胞分化、矿化和胚胎骨发生中发挥不可或缺的作用,进一步表明其促成骨作用可能是通过经典的 Bmp2/Smad/Runx2 通路介导的。