State Key Laboratory of Reproductive Medicine; Research Center for Bone and Stem Cells; Department of Anatomy, Histology and Embryology; Key Laboratory for Aging & Disease; Nanjing Medical University, Nanjing 211166, China.
Calcium Research Laboratory, McGill University Health Centre and Department of Medicine, McGill University, Montreal, Quebec H3A 1A1, Canada.
Int J Biol Sci. 2022 Jan 1;18(3):956-969. doi: 10.7150/ijbs.65954. eCollection 2022.
To explore the mechanism of the bone anabolic action of p27 deficiency, we first confirmed that osteoblast formation and osteogenesis were significantly increased in p27 deficient mice compared with their wild-type littermates. Microarray analysis of differential gene expression profiles, followed by real-time RT-PCR and Western blots revealed that p27 deletion significantly upregulated the expression of Sonic hedgehog (Shh), Gli1 and 2 and their target gene Bmi1 in bone tissue, and significantly down regulated the expression of the negative regulators of the Shh pathway Sufu, Patched 1 and Gli3 in bone tissue. The Shh antagonist KAAD-cyclopamine or vismodegib significantly reduced osteogenesis of bone marrow mesenchymal stem cells (BM-MSCs) and osteoblastic bone formation . The results of chromatin immunoprecipitation and double luciferase assay demonstrated that p27 inhibited Shh transcription mediated via E2F4. Bmi1 knockout blocked the increase of osteoblastic bone formation induced by p27 deficiency . In conclusion, the results of this study indicate that the signaling pathway Shh-Gli-Bmi1 plays a critical role in p27 deficiency induced bone anabolic action, suggesting that Bmi1 may be an important therapeutic target for osteoporosis induced by activation of p27 signaling or inactivation of sonic hedgehog signaling.
为了探究 p27 缺乏诱导骨形成作用的机制,我们首先确认 p27 缺陷型小鼠的成骨细胞形成和骨生成显著高于野生型同窝仔鼠。通过基因芯片差异表达谱分析,实时 RT-PCR 和 Western blot 结果显示,p27 缺失显著上调骨组织中 Sonic hedgehog(Shh)、Gli1 和 2 及其靶基因 Bmi1 的表达,显著下调骨组织中 Shh 通路负调控因子 Sufu、Patched 1 和 Gli3 的表达。Shh 拮抗剂 KAAD-cyclopamine 或 vismodegib 显著降低骨髓间充质干细胞(BM-MSCs)的成骨作用和成骨细胞的骨形成。染色质免疫沉淀和双荧光素酶检测结果表明,p27 通过 E2F4 抑制 Shh 转录。Bmi1 敲除阻断了 p27 缺乏诱导的成骨细胞骨形成增加。综上所述,本研究结果表明 Shh-Gli-Bmi1 信号通路在 p27 缺乏诱导的骨形成作用中发挥关键作用,提示 Bmi1 可能是激活 p27 信号或抑制 sonic hedgehog 信号导致的骨质疏松症的重要治疗靶点。