Journal of Otolaryngology and Ophthalmology of Shandong University ›› 2023, Vol. 37 ›› Issue (1): 41-46.doi: 10.6040/j.issn.1673-3770.0.2021.502

Previous Articles    

Expression and clinical significance of miR-181b-5P and EPB41L3 protein in laryngeal squamous cell carcinoma

HUANG Hengfeng1,2, MA Kunpeng2, YANG Di1,2, ZHANG Lijun2, ZHANG Shenglin3   

  1. 1. School of Clinical Medicine, Weifang Medical University, Weifang 261031, Shandong, China;
    2. Department of Otorhinolaryngology & Head and Neck Surgery, Affiliated Hospital of Weifang Medical University, Weifang 261031, Shandong, China;
    3. Department of Network Information Center, Weifang Medical University, Weifang 261042, Shandong, China
  • Published:2023-02-06

Abstract: Objective Currently, the expression relationship and mechanism of miR-181b-5P and Erythrocyte Membrane Protein Band 4.1-like 3(EPB41L3)in laryngeal cancer are still unclear. This paper mainly studied the expression levels of miR-181b-5P and EPB41L3 protein in laryngeal squamous cell carcinoma tissues and adjacent normal tissues, and than conducted correlation analysis. To explore the effects of miR-181b-5P targeted regulation of EPB41L3 on the proliferation, invasion and metastasis of laryngeal neoplasms. Methods Using bioinformatics databases predicted the expression of miR-181b-5P in laryngeal cancer, and quantitative real-time PCR was used to determine the expression of miR-181b-5P in laryngeal squamous cell carcinoma and adjacent normal tissues. The target genes of miR-181b-5P were predicted and analyzed by bioinformatics. The relative expression of EPB41L3 protein was detected by immunohistochemistry. Results The expression of miR-181b-5P in laryngeal carcinoma tissues was significantly higher than that in adjacent normal tissues(P<0.001), and there was significant difference in laryngeal carcinoma tissues with or without lymph node metastasis(P=0.027 3).The expression of EPB41L3 protein in laryngeal carcinoma tissues was significantly lower than that in adjacent normal tissues(P<0.001).The positive expression rate of EPB41L3 protein was obviously different in different pathological differentiation degrees, clinical stages and lymph node metastasis(P<0.05). The expressions of miR-181b-5p and EPB41L3 protein in laryngeal carcinoma tissues were negatively correlated(r=-0.420 8, P=0.002 3). Conclusion miR-181b-5p may negatively regulate the expression of EPB41L3 and than affect the proliferation, invasion and metastasis of laryngeal cancer. This study maybe provide new ideas for clinical targeted therapy of laryngeal cancer.

Key words: Laryngeal cancer, miR-181b-5P, EPB41L3, Immunohistochemistry, Quantitative real-time PCR

CLC Number: 

  • R767.1
[1] Siegel RL, Miller KD, Jemal A. Cancer statistics, 2018[J]. CA Cancer J Clin, 2018, 68(1): 7-30. doi:10.3322/caac.21442
[2] Bray F, Ferlay J, Soerjomataram I, et al. Global cancer statistics 2018: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries[J]. CA Cancer J Clin, 2018, 68(6): 394-424. doi:10.3322/caac.21492
[3] 周恩, 肖禹, 肖旭平. 等离子射频消融技术在早期声门型喉癌治疗中的应用进展[J]. 山东大学耳鼻喉眼学报, 2021, 35(2): 9-15. doi:10.6040/j.issn.1673-3770.1.2020.101 ZHOU En, XIAO Yu, XIAO Xuping. Application progress of radiofrequency ablation technology in the treatment of early glottic carcinoma[J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2021, 35(2): 9-15. doi:10.6040/j.issn.1673-3770.1.2020.101
[4] 庞振文, 黄愉峰, 杨爱芳, 等. 喉癌患者术前中性粒细胞/淋巴细胞比值与淋巴结转移的相关性研究[J]. 山东大学耳鼻喉眼学报, 2020, 34(6): 58-62. doi:10.6040/j.issn.1673-3770.0.2019.546 PANG Zhenwen, HUANG Yufeng, YANG Aifang, et al. Correlation between Preoperative neutrophil/lymphocyte ratio and lymph node metastasis in patients with laryngeal cancer[J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2020, 34(6): 58-62. doi:10.6040/j.issn.1673-3770.0.2019.546
[5] Bai H, Wu SH. miR-451: a novel biomarker and potential therapeutic target for cancer[J]. Onco Targets Ther, 2019, 12: 11069-11082. doi:10.2147/OTT.S230963
[6] Peka K, Klicka K, Grzywa TM, et al. miR-96-5p, miR-134-5p, miR-181b-5p and miR-200b-3p heterogenous expression in sites of prostate cancer versus benign prostate hyperplasia-archival samples study[J]. Histochem Cell Biol, 2021, 155(3): 423-433. doi:10.1007/s00418-020-01941-2
[7] Rupaimoole R, Slack FJ. microRNA therapeutics: towards a new era for the management of cancer and other diseases[J]. Nat Rev Drug Discov, 2017, 16(3): 203-222. doi:10.1038/nrd.2016.246
[8] Peng Y, Croce CM. The role of microRNAs in human cancer[J]. Signal Transduct Target Ther, 2016, 1: 15004. doi:10.1038/sigtrans.2015.4
[9] Perge P, Decmann á, Pezzani R, et al. Analysis of circulating extracellular vesicle-associated microRNAs in cortisol-producing adrenocortical tumors[J]. Endocrine, 2018, 59(2): 280-287. doi:10.1007/s12020-017-1506-z
[10] Indrieri A, Carrella S, Carotenuto P, et al. The pervasive role of the miR-181 family in development, neurodegeneration, and cancer[J]. Int J Mol Sci, 2020, 21(6): E2092. doi:10.3390/ijms21062092
[11] Hu RH, Zhang ZT, Wei HX, et al. LncRNA ST7-AS1, by regulating miR-181b-5p/KPNA4 axis, promotes the malignancy of lung adenocarcinoma[J]. Cancer Cell Int, 2020, 20(1): 568. doi:10.1186/s12935-020-01652-7
[12] Chen S, Liu Y, Wang YY, et al. LncRNA CCAT1 promotes colorectal cancer tumorigenesis via A miR-181b-5p/TUSC3 axis[J]. Onco Targets Ther, 2019, 12: 9215-9225. doi:10.2147/OTT.S216718
[13] Tomihara H, Yamada D, Eguchi H, et al. microRNA-181b-5p, ETS1, and the c-Met pathway exacerbate the prognosis of pancreatic ductal adenocarcinoma after radiation therapy[J]. Cancer Sci, 2017, 108(3): 398-407. doi:10.1111/cas.13159
[14] Son HJ, Choi EJ, Yoo NJ, et al. Mutation and expression of a candidate tumor suppressor gene EPB41L3 in gastric and colorectal cancers[J]. Pathol Oncol Res, 2020, 26(3): 2003-2005. doi:10.1007/s12253-019-00787-x
[15] Zhu LY, Yang NH, Chen J, et al. LINC00052 upregulates EPB41L3 to inhibit migration and invasion of hepatocellular carcinoma by binding miR-452-5p[J]. Oncotarget, 2017, 8(38): 63724-63737. doi:10.18632/oncotarget.18892
[16] Qiu XL, Guan XY, Liu WX, et al. DAL-1 attenuates epithelial to mesenchymal transition and metastasis by suppressing HSPA5 expression in non-small cell lung cancer[J]. Oncol Rep, 2017, 38(5): 3103-3113. doi:10.3892/or.2017.6000
[17] Wang H, Xu M, Cui XB, et al. Aberrant expression of the candidate tumor suppressor gene DAL-1 due to hypermethylation in gastric cancer[J]. Sci Rep, 2016, 6: 21755. doi:10.1038/srep21755
[18] Wang Z, Zhang J, Ye M, et al. Tumor suppressor role of protein 4.1B/DAL-1[J]. Cell Mol Life Sci, 2014, 71(24): 4815-4830. doi:10.1007/s00018-014-1707-z
[19] Zeng R, Liu Y, Jiang ZJ, et al. EPB41L3 is a potential tumor suppressor gene and prognostic indicator in esophageal squamous cell carcinoma[J]. Int J Oncol, 2018, 52(5): 1443-1454. doi:10.3892/ijo.2018.4316
[20] Guo Z, Zhang XF, Zhu HB, et al. TELO2 induced progression of colorectal cancer by binding with RICTOR through mTORC2[J]. Oncol Rep, 2021, 45(2): 523-534. doi:10.3892/or.2020.7890
[21] Steuer CE, El-Deiry M, Parks JR, et al. An update on larynx cancer[J]. CA Cancer J Clin, 2017, 67(1): 31-50. doi:10.3322/caac.21386
[22] Guo F, Tang CC, Li YW, et al. The interplay of LncRNA ANRIL and miR-181b on the inflammation-relevant coronary artery disease through mediating NF-κB signalling pathway[J]. J Cell Mol Med, 2018, 22(10): 5062-5075. doi:10.1111/jcmm.13790
[23] Wang L, Wang YX, Chen LP, et al. Upregulation of microRNA-181b inhibits CCL18-induced breast cancer cell metastasis and invasion via the NF-κB signaling pathway[J]. Oncol Lett, 2016, 12(6): 4411-4418. doi:10.3892/ol.2016.5230
[24] Zhou Y, Zheng X, Chen LJ, et al. microRNA-181b suppresses the metastasis of lung cancer cells by targeting sex determining region Y-related high mobility group-box 6(Sox6)[J]. Pathol Res Pract, 2019, 215(2): 335-342. doi:10.1016/j.prp.2018.12.009
[25] Yang XF, Sun Y, Zhang Y, et al. Downregulation of miR181b inhibits human colon cancer cell proliferation by targeting CYLD and inhibiting the NF-κB signaling pathway[J]. Int J Mol Med, 2020, 46(5): 1755-1764. doi:10.3892/ijmm.2020.4720
[26] Jiang ZL, Zhang FX, Zhan HL, et al. miR-181b-5p promotes the progression of cholangiocarcinoma by targeting PARK2 via PTEN/PI3K/AKT signaling pathway[J]. Biochem Genet, 2022, 60(1): 223-240. doi:10.1007/s10528-021-10084-5
[27] Yeon M, Kim Y, Pathak D, et al. The CAGE-miR-181b-5p-S1PR1 axis regulates anticancer drug resistance and autophagy in gastric cancer cells[J]. Front Cell Dev Biol, 2021, 9: 666387. doi:10.3389/fcell.2021.666387
[28] Yuan X, Piao L, Wang L, et al. Pivotal roles of protein 4.1B/DAL1, a FERMdomain containing protein, in tumor progression(Review)[J]. Int J Oncol, 2019, 55(5): 979-987. doi:10.3892/ijo.2019.4877
[29] Wang CB, Li KY, Men YL, et al. Protein 4.1B suppresses tumor metastasis by regulating epithelial-mesenchymal transition progression in melanoma cells[J]. Int J Med Sci, 2019, 16(4): 529-536. doi:10.7150/ijms.27401
[30] Yuan XF, Piao LH, Wang LH, et al. Erythrocyte membrane protein band 4.1-like 3 inhibits osteosarcoma cell invasion through regulation of Snai1-induced epithelial-to-mesenchymal transition[J]. Aging(Albany NY), 2020, 13(2): 1947-1961. doi:10.18632/aging.202158
[1] WANG MeiOverview,LI ZhihaiGuidance. Laryngeal cancer stem cells: potential therapeutic targets for overcoming multidrug resistance [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2022, 36(4): 120-128.
[2] WANG Xiaoting, CHEN Zhengnong, YI Hongliang. Transcriptomic analysis of glutamine deprivation on laryngeal carcinoma cells [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2022, 36(2): 26-31.
[3] CHENG Yao, ZHANG Zhen, YANG Ji, FENG Chengmin, DENG Qicheng, ZHANG Xi, ZHAO Rui, ZHU Xin, WU Junzhi, LIU Hai, DENG Shishan. Expression and clinical significance of CIP2A in hypopharyngeal carcinoma [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2022, 36(2): 40-44.
[4] LI Yanjie, JIA Jian, YANG Ping, WAN Baoluo. Study on the value of tumor abnormal protein in clinical diagnosis of laryngeal carcinoma [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2021, 35(5): 70-74.
[5] XUE Gang, SUN Xinmin, LIN Xu, WU Jingfang. Expression and clinical significance of the KCNK5 double-pore potassium channel protein in papillary thyroid carcinoma [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2021, 35(4): 64-69.
[6] LI Wenjing,LIU Ming. Research progress on the relationship between the C2H2 zinc finger protein family and laryngeal cancer [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2021, 35(1): 125-130.
[7] . The swallowing function recovery study on tongue flap after horizontal hemilaryngectomy [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2020, 34(5): 127-131.
[8] . Expression of cyclin E2 in hypopharyngeal cancer and its clinical significance [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2020, 34(5): 132-137.
[9] JIANG Ningning, WANG Penglai, YUAN Changyong, HUANG Xiaofeng, JIANG Changwei, LIU Zongxiang,SUN Tiezhong. The expression and significance of metastasis suppressor 1 protein in tongue squamous cell carcinoma [J]. Journal of Otolaryngology and Ophthalmology of Shandong University, 2019, 33(6): 64-67.
[10] LI Hao, LI Yanzhong, WANG Yan. Hypoxia inducible factor-1 alpha and vascular endothelial growth factor expression in the soft palate of [J]. JOURNAL OF SHANDONG UNIVERSITY (OTOLARYNGOLOGY AND OPHTHALMOLOGY), 2018, 32(2): 43-47.
[11] ZHANG Menglu, LI Yongtuan.. Expression of chemokine ligand 27 in secondary middle ear cholesteatoma. [J]. JOURNAL OF SHANDONG UNIVERSITY (OTOLARYNGOLOGY AND OPHTHALMOLOGY), 2017, 31(6): 46-48.
[12] AN Yongming, MU Wenli, TIAN Yanxun, LI Wei, WU Yanqiao. The significance of Maspin and Ets1 in laryngeal squamous carcinoma. [J]. JOURNAL OF SHANDONG UNIVERSITY (OTOLARYNGOLOGY AND OPHTHALMOLOGY), 2017, 31(3): 91-94.
[13] XU Yuanteng, CHEN Ruiqing, LIN Gongbiao, FANG Xiuling, YU Shujuan, LIANG Xiaohua, ZHANG Rong. Effect of silencing PDCD4 gene on proliferation of Hep-2 cells and the expression of β-catenin by RNA interference technique. [J]. JOURNAL OF SHANDONG UNIVERSITY (OTOLARYNGOLOGY AND OPHTHALMOLOGY), 2016, 30(5): 110-114.
[14] LI Xiaoming, SONG Qi, LI Hongxia, TAO Zhenfeng, SHEN Yupeng, XIAO Shufen. Reconstruction of hypopharyngeal defects after ablation of advanced head and neck squamous carcinoma involving hypophaynx with pectoralis major myocutaneous flap. [J]. JOURNAL OF SHANDONG UNIVERSITY (OTOLARYNGOLOGY AND OPHTHALMOLOGY), 2016, 30(3): 4-9.
[15] SU Tiantian, ZHANG Jia, SUN Zhenfeng. Roles of multidrug resistance proteins P-gp and ABCG2 in laryngocatcinoma and their related signal pathways. [J]. JOURNAL OF SHANDONG UNIVERSITY (OTOLARYNGOLOGY AND OPHTHALMOLOGY), 2016, 30(3): 103-106.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!