Department of Orthopaedics, Xiangya Hospital, Central South University, Changsha, 410008, China.
Cell Death Dis. 2019 Jun 17;10(7):470. doi: 10.1038/s41419-019-1693-z.
The osteogenic differentiation of human bone mesenchymal stromal cells (BMSCs) has been considered as a central issue in fracture healing. Wnt signaling could promote BMSC osteogenic differentiation through inhibiting PPARγ. During atrophic nonunion, Wnt signaling-related factors, WNT5A and FZD3 proteins, were significantly reduced, along with downregulation of Runx2, ALP, and Collagen I and upregulation of PPARγ. Here, we performed a microarray analysis to identify differentially expressed miRNAs in atrophic nonunion tissues that were associated with Wnt signaling through targeting related factors. Of upregulated miRNAs, miR-381 overexpression could significantly inhibit the osteogenic differentiation in primary human BMSCs while increase in PPARγ protein level. Through binding to the 3'UTR of WNT5A and FZD3, miR-381 modulated the osteogenic differentiation via regulating β-catenin nucleus translocation. Moreover, PPARγ, an essential transcription factor inhibiting osteogenic differentiation, could bind to the promoter region of miR-381 to activate its expression. Taken together, PPARγ-induced miR-381 upregulation inhibits the osteogenic differentiation in human BMSCs through miR-381 downstream targets, WNT5A and FZD3, and β-catenin nucleus translocation in Wnt signaling. The in vivo study also proved that inhibition of miR-381 promoted the fracture healing. Our finding may provide a novel direction for atrophic nonunion treatment.
人骨髓间充质基质细胞(BMSCs)的成骨分化一直被认为是骨折愈合的核心问题。Wnt 信号可以通过抑制 PPARγ 来促进 BMSC 的成骨分化。在萎缩性骨不连中,Wnt 信号相关因子 WNT5A 和 FZD3 蛋白显著减少,同时 Runx2、ALP 和 Collagen I 下调,PPARγ 上调。在这里,我们进行了微阵列分析,以鉴定与 Wnt 信号相关的差异表达 miRNA,这些 miRNA 通过靶向相关因子与 Wnt 信号相关。在上调的 miRNA 中,miR-381 的过表达可显著抑制原代人 BMSCs 的成骨分化,同时增加 PPARγ 蛋白水平。通过与 WNT5A 和 FZD3 的 3'UTR 结合,miR-381 通过调节β-catenin 核易位来调节成骨分化。此外,PPARγ 是一种抑制成骨分化的重要转录因子,它可以结合 miR-381 的启动子区域来激活其表达。总之,PPARγ 诱导的 miR-381 上调通过 miR-381 下游靶点 WNT5A 和 FZD3 以及 Wnt 信号中的β-catenin 核易位抑制人 BMSCs 的成骨分化。体内研究也证明了抑制 miR-381 可促进骨折愈合。我们的发现可能为萎缩性骨不连的治疗提供了一个新的方向。