AbstractObjective To investigate the expression of double-stranded RNA-binding protein nuclear factor 45 (NF45) in laryngeal squamous cell carcinoma (LSCC), and the effect of NF45 on the radiation sensitivity of LSCC cells and its mechanism. Methods NF45 expression in LSCC and adjacent tissues was detected by real-time reverse transcription PCR (qRT-PCR) and immunohistochemical staining. The NF45-ShRNA lentivirus was transfected into Hep-2 cells, and cell transfection efficiency was determined by qRT-PCR and Western blot . Hep-2 cells were randomly divided into the control group, 2 Gy group, sh-NC+2 Gy group and sh-NF45+2 Gy group. Lentivirus infection and 2Gy X-ray irradiation treatment were carried out. Cell proliferation activity was assessed by CCK-8 assay. Apoptosis rate was determined by flow cytometry. Hep-2 cells in each group were treated with mCherry-EGFP-LC3B. The levels of autophagy were detected by immunofluorescence staining. The ratio of autophagy-related protein microtubule-associated protein 1 light chain 3 (LC3)-Ⅱ/LC3-Ⅰ and the expression levels of Beclin-1 and p62 proteins were determined by Western blot. Results The expression level of NF45 in LSCC tissues was significantly higher than that in adjacent tissues (P<0.01). The relative expression levels of NF45 mRNA and protein in Hep-2 cells infected with NF45-shRNA were significantly lower than those in the control and sh-NC groups (all P<0.05). Compared with the control group, the cell proliferation activity was decreased, the apoptosis rate was increased, the intracellular autophagy-lysosome were increased, the ratio of LC3-Ⅱ/LC3-Ⅰ was increased, the relative expression levels of Beclin-1 protein were up-regulated, and the relative expression levels of p62 protein were down-regulated in the 2 Gy, sh-NC+2 Gy and sh-NF45+2 Gy groups (all P<0.05). Compared with the 2 Gy group, the cell proliferation activity was decreased, the apoptosis rate was increased, the intracellular autophagy lysosomes were increased, the LC3-Ⅱ/LC3-Ⅰ ratio was increased, the relative expression of Beclin-1 protein was up-regulated, and the relative expression of p62 protein was down-regulated in the sh-NF45+2 Gy group (all P<0.05). Conclusions The expression of NF45 is up-regulated in LSCC tissues. Targeted down-regulation of NF45 expression can inhibit the proliferation activity of LSCC cells, promote cell apoptosis, and improve the sensitivity of tumor cells to radiation. The mechanism may be related to the regulation of autophagy levels.
Gulinaer Tuerdi,Zhu Chengbin,Zhao Hui et al. Expression of NF45 in laryngeal squamous cell carcinoma and its effect on radiation sensitivity of tumor cells[J]. Chinese Journal of Radiation Oncology, 2023, 32(4): 353-359.
Gulinaer Tuerdi,Zhu Chengbin,Zhao Hui et al. Expression of NF45 in laryngeal squamous cell carcinoma and its effect on radiation sensitivity of tumor cells[J]. Chinese Journal of Radiation Oncology, 2023, 32(4): 353-359.
[1] Ma JH, Hu XD, Dai BQ, et al.Bioinformatics analysis of laryngeal squamous cell carcinoma: seeking key candidate genes and pathways[J]. PeerJ, 2021,9:e11259. DOI: 10.7717/peerj.11259. [2] Mo BY, Li GS, Huang SN, et al.The underlying molecular mechanism and identification of transcription factor markers for laryngeal squamous cell carcinoma[J]. Bioengineered, 2021,12(1):208-224. DOI: 10.1080/21655979.2020.1862527. [3] Seebauer CT, Hackenberg B, Grosse J, et al.Routine restaging after primary non-surgical treatment of laryngeal squamous cell carcinoma-a review[J]. Strahlenther Onkol, 2021,197(3):167-176. DOI: 10.1007/s00066-020-01706-9. [4] Franco R, Marta GN.Timing factors as prognostic variables in patients with head and neck squamous cell carcinoma treated with adjuvant radiotherapy: a literature review[J]. Rev Assoc Med Bras (1992), 2020,66(3):380-384. DOI: 10.1590/1806-9282.66.3.380. [5] Wan CH, Gong C, Ji L, et al.NF45 overexpression is associated with poor prognosis and enhanced cell proliferation of pancreatic ductal adenocarcinoma[J]. Mol Cell Biochem, 2015,410(1-2):25-35. DOI: 10.1007/s11010-015-2535-7. [6] Wen-Jian Y, Song T, Jun T, et al.NF45 promotes esophageal squamous carcinoma cell invasion by increasing Rac1 activity through 14-3-3ε protein[J]. Arch Biochem Biophys, 2019,663:101-108. DOI: 10.1016/j.abb.2018. 12.012. [7] Huang QF, He XJ, Qiu XJ, et al.Expression of NF45 correlates with malignant grade in gliomas and plays a pivotal role in tumor growth[J]. Tumour Biol, 2014,35(10):10149-10157. DOI: 10.1007/s13277-014-2310-5. [8] 周嵩, 李腾飞, 罗恒丹, 等. Neuropilin-1表达对口腔鳞状细胞癌放疗敏感性的影响[J]. 中华老年口腔医学杂志, 2021, 19(3):140-144. DOI: 10.19749/j.cn.cjgd.1672-2973. 2021.03.003. Zhou S, Li TF, Luo HD, et al. Effect of Neuropilin-1 expression on radiotherapy-sensitivity of oral squamous cell carcinoma[J]. Chinese Journal of Geriatric Dentistry, 2021, 19(3):140-144. DOI: 10.19749/j.cn.cjgd.1672- 2973.2021.03.003. [9] Lumniczky K, Impens N, Armengol G, et al.Low dose ionizing radiation effects on the immune system[J]. Environ Int, 2021,149:106212. DOI: 10.1016/j.envint. 2020.106212. [10] Hauptmann M, Daniels RD, Cardis E, et al.Epidemiological studies of low-dose ionizing radiation and cancer: summary bias assessment and meta-analysis[J]. J Natl Cancer Inst Monogr, 2020,2020(56):188-200. DOI: 10.1093/jncimonographs/lgaa010. [11] Wang Y, Liu ZG, Yuan H, et al.The reciprocity between radiotherapy and cancer immunotherapy[J]. Clin Cancer Res, 2019,25(6):1709-1717. DOI: 10.1158/1078-0432.CCR-18-2581. [12] Valerie K, Yacoub A, Hagan MP, et al.Radiation-induced cell signaling: inside-out and outside-in[J]. Mol Cancer Ther, 2007,6(3):789-801. DOI: 10.1158/1535-7163.MCT- 06-0596. [13] Ding M, Zhang E, He R, et al.Newly developed strategies for improving sensitivity to radiation by targeting signal pathways in cancer therapy[J]. Cancer Sci, 2013,104(11):1401-1410. DOI: 10.1111/cas.12252. [14] Denton D, Kumar S.Autophagy-dependent cell death[J]. Cell Death Differ, 2019,26(4):605-616. DOI: 10.1038/s41418-018-0252-y. [15] Chmurska A, Matczak K, Marczak A. Two faces of autophagy in the struggle against cancer[J]. Int J Mol Sci, 2021,22(6)DOI: 10.3390/ijms22062981. [16] 杨廷芳, 王丽, 史月滨, 等. 细胞自噬在辐射诱导旁效应中的作用研究进展[J].解放军医学院学报,2021,42(5):578-583. DOI: 10.3969/j.issn.2095-5227.2021.05.019. Yang TF, Wang L, Shi YB, et al.Research advances in role of autophagy in radiation-induced bystander effect[J]. Academic Journal of Chinese Pla Medical School,2021,42(5):578-583. DOI: 10.3969/j.issn.2095-5227.2021. 05.019. [17] Tam SY, Wu VW, Law HK.Influence of autophagy on the efficacy of radiotherapy[J]. Radiat Oncol, 2017,12(1):57. DOI: 10.1186/s13014-017-0795-y. [18] Wang BF, Min WL, Lin S, et al.Saikosaponin-d increases radiation-induced apoptosis of hepatoma cells by promoting autophagy via inhibiting mTOR phosphorylation[J]. Int J Med Sci, 2021,18(6):1465-1473. DOI: 10.7150/ijms.53024. [19] Jo GH, Bögler O, Chwae YJ, et al.Radiation-induced autophagy contributes to cell death and induces apoptosis partly in malignant glioma cells[J]. Cancer Res Treat, 2015,47(2):221-241. DOI: 10.4143/crt. 2013.159.