Spine Center, Department of Orthopaedics, Changzheng Hospital, Second Military Medical University, 415th Feng Yang Road, Shanghai, 200003, P.R. China.
Department of Orthopedic Surgery, Sixth People's Hospital Affiliated to Shanghai Jiao Tong University, 800th Yi Shan Road, Shanghai, 200233, P.R. China.
Sci Rep. 2018 Jun 15;8(1):9225. doi: 10.1038/s41598-018-27514-x.
Ossification of the posterior longitudinal ligament (OPLL) presents as pathological heterotopic ossification of the spinal ligaments. However, its underlying molecular mechanism is still unclear. Our previous findings suggested that altered microRNA regulatory network are critical for the development of OPLL. Here, we set out to unveiling the detailed mechanism of those altered OPLL-specific microRNAs. We screened a set of differentially expressed OPLL-specific microRNAs from the previous sequencing data and showed that microRNA-10a actively modulates the ossification of posterior ligament cells in vitro. Using a tissue-engineered scaffold grown from 4-week-old BALB/c homozygous nude mice, we found that altered microRNA-10a expression in posterior ligament cells indeed affected the heterotopic bone formation in vivo. Furthermore, computational analysis showed that the negative ossification regulator ID3 is a functional target gene of microRNA-10a, and its expression was also significantly altered during microRNA-10a modulation both in vitro and in vivo. Also, we have demonstrated that the ossification promoting function of microRNA-10a requires ID3, as ID3 actively inhibits RUNX2. Thus, we identified a critical role for highly altered OPLL-specific microRNA-10a in regulating the development of OPLL by modulating the ID3/RUNX2 axis.
骨化的后纵韧带(OPLL)表现为脊柱韧带的病理性异位骨化。然而,其潜在的分子机制尚不清楚。我们之前的研究结果表明,改变的 microRNA 调控网络对 OPLL 的发展至关重要。在这里,我们着手揭示这些改变的 OPLL 特异性 microRNA 的详细机制。我们从以前的测序数据中筛选出一组差异表达的 OPLL 特异性 microRNA,并表明 microRNA-10a 可在体外积极调节后韧带细胞的骨化。使用从 4 周大的 BALB/c 纯合裸鼠中生长的组织工程支架,我们发现后韧带细胞中改变的 microRNA-10a 表达确实会影响体内异位骨形成。此外,计算分析表明,负性骨化调节剂 ID3 是 microRNA-10a 的功能靶基因,其表达在体外和体内 microRNA-10a 调节过程中也明显改变。此外,我们已经证明,microRNA-10a 的促骨形成功能需要 ID3,因为 ID3 可积极抑制 RUNX2。因此,我们确定了高度改变的 OPLL 特异性 microRNA-10a 通过调节 ID3/RUNX2 轴在调控 OPLL 发展中的关键作用。