Bozsodi Arpad, Scholtz Beata, Papp Gergo, Sapi Zoltan, Biczo Adam, Varga Peter Pal, Lazary Aron
National Center for Spinal Disorders, Buda Health Center, Királyhágó u. 1-3, Budapest, H-1126, Hungary.
School of PhD Studies, Semmelweis University, Üllői út 26, Budapest, H-1085, Hungary.
Heliyon. 2022 Aug 13;8(8):e10227. doi: 10.1016/j.heliyon.2022.e10227. eCollection 2022 Aug.
Chordoma, the most frequent malignant primary spinal neoplasm, characterized by a high rate of recurrence, is an orphan disease where the clarification of the molecular oncogenesis would be crucial to developing new, effective therapies. Dysregulated expression of non-coding RNAs, especially microRNAs (miRNA) has a significant role in cancer development.
Next-generation RNA sequencing (NGS) was used for the combinatorial analysis of mRNA-miRNA gene expression profiles in sacral chordoma and nucleus pulposus samples. Advanced bioinformatics workflow was applied to the data to predict miRNA-mRNA regulatory networks with altered activity in chordoma.
A large set of significantly dysregulated miRNAs in chordoma and their differentially expressed target genes have been identified. Several molecular pathways related to tumorigenesis and the modulation of the immune system are predicted to be dysregulated due to aberrant miRNA expression in chordoma. We identified a gene set including key regulators of the Hippo pathway, which is targeted by differently expressed miRNAs, and validated their altered expression by RT-qPCR. These newly identified miRNA/RNA interactions are predicted to have a role in the self-renewal process of chordoma stem cells, which might sustain the high rate of recurrence for this tumor.
Our results can significantly contribute to the designation of possible targets for the development of anti-chordoma therapies.
脊索瘤是最常见的原发性脊柱恶性肿瘤,其特点是复发率高,是一种罕见病,阐明分子肿瘤发生机制对于开发新的有效治疗方法至关重要。非编码RNA,尤其是微小RNA(miRNA)的表达失调在癌症发展中起重要作用。
采用下一代RNA测序(NGS)对骶骨脊索瘤和髓核样本中的mRNA-miRNA基因表达谱进行组合分析。将先进的生物信息学工作流程应用于数据,以预测脊索瘤中活性改变的miRNA-mRNA调控网络。
已鉴定出脊索瘤中大量显著失调的miRNA及其差异表达的靶基因。预计由于脊索瘤中异常的miRNA表达,与肿瘤发生和免疫系统调节相关的几种分子途径会失调。我们鉴定了一个包括Hippo通路关键调节因子的基因集,该基因集被差异表达的miRNA靶向,并通过RT-qPCR验证了它们的表达改变。这些新鉴定的miRNA/RNA相互作用预计在脊索瘤干细胞的自我更新过程中起作用,这可能维持该肿瘤的高复发率。
我们的结果可为抗脊索瘤治疗开发的可能靶点的确定做出重大贡献。