From the Department of Oral Medicine, Infection, and Immunity, Harvard School of Dental Medicine, Boston, Massachusetts 02115 and the Departments of Oral and Maxillofacial Surgery and.
From the Department of Oral Medicine, Infection, and Immunity, Harvard School of Dental Medicine, Boston, Massachusetts 02115 and.
J Biol Chem. 2014 Sep 5;289(36):24898-910. doi: 10.1074/jbc.M114.570507. Epub 2014 Jul 15.
Indian hedgehog (Ihh) is essential for chondrocyte differentiation and endochondral ossification and acts with parathyroid hormone-related peptide in a negative feedback loop to regulate early chondrocyte differentiation and entry to hypertrophic differentiation. Independent of this function, we and others recently reported independent Ihh functions to promote chondrocyte hypertrophy and matrix mineralization in vivo and in vitro. However, the molecular mechanisms for these actions and their functional significance are still unknown. We recently discovered that Ihh overexpression in chondrocytes stimulated the expression of late chondrocyte differentiation markers and induced matrix mineralization. Focusing on collagen type X (Col10α1) expression and transcription, we observed that hedgehog downstream transcription factors GLI-Krüppel family members (Gli) 1/2 increased COL10A1 promoter activity and identified a novel Gli1/2 response element in the 250-bp basic promoter. In addition, we found that Ihh induced Runx2 expression in chondrocytes without up-regulating other modulators of chondrocyte maturation such as Mef2c, Foxa2, and Foxa3. Runx2 promoted Col10α1 expression in cooperation with Ihh. Further analyses using promoter assays, immunofluorescence, and binding assays showed the interaction of Gli1/2 in a complex with Runx2/Smads induces chondrocyte differentiation. Finally, we could demonstrate that Ihh promotes in vitro matrix mineralization using similar molecular mechanisms. Our data provide an in vitro mechanism for Ihh signaling to positively regulate Col10α1 transcription. Thus, Ihh signaling could be an important player for not only early chondrocyte differentiation but maturation and calcification of chondrocytes.
印度刺猬(Ihh)对于软骨细胞分化和软骨内骨化是必不可少的,它与甲状旁腺激素相关肽(PTHrP)一起在负反馈回路中发挥作用,以调节早期软骨细胞分化和进入肥大分化。独立于这一功能,我们和其他人最近报道了 Ihh 的独立功能,可在体内和体外促进软骨细胞肥大和基质矿化。然而,这些作用的分子机制及其功能意义仍不清楚。我们最近发现,软骨细胞中 Ihh 的过表达刺激了晚期软骨细胞分化标志物的表达,并诱导了基质矿化。我们专注于胶原类型 X(Col10α1)的表达和转录,观察到刺猬下游转录因子Gli-Krüppel 家族成员(Gli)1/2 增加了 COL10A1 启动子活性,并在 250bp 基本启动子中鉴定出一个新的 Gli1/2 反应元件。此外,我们发现 Ihh 在不上调其他软骨细胞成熟调节剂(如 Mef2c、Foxa2 和 Foxa3)的情况下诱导软骨细胞中 Runx2 的表达。Runx2 与 Ihh 协同促进 Col10α1 的表达。使用启动子分析、免疫荧光和结合分析的进一步分析表明,Gli1/2 与 Runx2/Smads 形成复合物相互作用诱导软骨细胞分化。最后,我们可以证明 Ihh 通过类似的分子机制促进体外基质矿化。我们的数据提供了 Ihh 信号正向调节 Col10α1 转录的体外机制。因此,Ihh 信号不仅对早期软骨细胞分化,而且对软骨细胞的成熟和钙化都可能是一个重要的参与者。