Paszkowska Anna, Kolenda Tomasz, Guglas Kacper, Kozłowska-Masłoń Joanna, Podralska Marta, Teresiak Anna, Bliźniak Renata, Dzikiewicz-Krawczyk Agnieszka, Lamperska Katarzyna
Laboratory of Cancer Genetics, Greater Poland Cancer Center, Garbary Street 15, 61-866 Poznan, Poland.
Faculty of Biology, Adam Mickiewicz University, Umultowska 89, 61-614 Poznan, Poland.
J Pers Med. 2022 Oct 11;12(10):1696. doi: 10.3390/jpm12101696.
Long non-coding RNAs have proven to be important molecules in carcinogenesis. Due to little knowledge about them, the molecular mechanisms of tumorigenesis are still being explored. The aim of this work was to study the effect of ionizing radiation on the expression of lncRNAs in head and neck squamous cell carcinoma (HNSCC) in patients responding and non-responding to radiotherapy. The experimental model was created using a group of patients with response (RG, = 75) and no response (NRG, = 75) to radiotherapy based on the cancer genome atlas (TCGA) data. Using the in silico model, statistically significant lncRNAs were defined and further validated on six HNSCC cell lines irradiated at three different doses. Based on the TCGA model, C10orf55, C3orf35, C5orf38, CASC2, MEG3, MYCNOS, SFTA1P, SNHG3, and TMEM105, with the altered expression between the RG and NRG were observed. Analysis of pathways and immune profile indicated that these lncRNAs were associated with changes in processes, such as epithelial-to-mesenchymal transition, regulation of spindle division, and the p53 pathway, and differences in immune cells score and lymphocyte infiltration signature score. However, only C10orf55, CASC2, and SFTA1P presented statistically altered expression after irradiation in the in vitro model. In conclusion, the expression of lncRNAs is affected by ionization radiation in HNSCC, and these lncRNAs are associated with pathways, which are important for radiation response and immune response. Potentially presented lncRNAs could be used as biomarkers for personalized radiotherapy in the future. However, these results need to be verified based on an in vitro experimental model to show a direct net of interactions.
长链非编码RNA已被证明是致癌过程中的重要分子。由于对它们了解甚少,肿瘤发生的分子机制仍在探索中。这项工作的目的是研究电离辐射对放疗有反应和无反应的头颈鳞状细胞癌(HNSCC)患者lncRNAs表达的影响。基于癌症基因组图谱(TCGA)数据,使用一组对放疗有反应(RG,n = 75)和无反应(NRG,n = 75)的患者创建了实验模型。使用计算机模拟模型,定义了具有统计学意义的lncRNAs,并在三种不同剂量照射的六种HNSCC细胞系上进一步验证。基于TCGA模型,观察到C10orf55、C3orf35、C5orf38、CASC2、MEG3、MYCNOS、SFTA1P、SNHG3和TMEM105在RG和NRG之间表达改变。通路和免疫图谱分析表明,这些lncRNAs与上皮-间质转化、纺锤体分裂调节和p53通路等过程的变化以及免疫细胞评分和淋巴细胞浸润特征评分的差异有关。然而,在体外模型中,只有C10orf55、CASC2和SFTA1P在照射后呈现出统计学上的表达改变。总之,lncRNAs的表达在HNSCC中受电离辐射影响,这些lncRNAs与对辐射反应和免疫反应很重要的通路有关。潜在的lncRNAs未来可能用作个性化放疗的生物标志物。然而,这些结果需要基于体外实验模型进行验证,以显示直接的相互作用网络。