Yu Miaomiao, Cao Huan, Yang Jianwang, Liu Tao, Wang Baoshan
Department of Otorhinolaryngology, The Second Hospital of Hebei Medical University, Shijiazhuang, China.
Heliyon. 2024 Sep 1;10(17):e37264. doi: 10.1016/j.heliyon.2024.e37264. eCollection 2024 Sep 15.
Emerging evidence suggests that circular RNAs (circRNAs) are involved in the regulation of tumourigenesis and progression of a variety of malignant tumours. In this study, we aimed to identify laryngeal squamous cell carcinoma (LSCC)-specific circRNAs and explore their biological functions and underlying molecular mechanisms. Employing microarray and qRT-PCR, hsa_circ_0000825 was found to be significantly increased in LSCC tissues versus para-cancerous tissues. High hsa_circ_0000825 expression was positively associated with advanced clinical stages, lymph node metastasis, and poor survival. Furthermore, the overexpression of hsa_circ_0000825 in TU177 and AMC-HN-8 cells promoted cell proliferation. Transwell assays showed enhanced migration and invasion of TU177 and AMC-HN-8 cells upon overexpression of hsa_circ_0000825. Conversely, the knockdown of hsa_circ_0000825 had the opposite effect. Xenograft tumours in BALB/c nude mice derived from hsa_circ_0000825-overexpressed TU177 cells showed greater volume and weight than those derived from control TU177 cells. Mechanistically, nuclear-cytoplasmic fractionation assay confirmed that hsa_circ_0000825 was mainly located in the cytoplasm of TU177 and AMC-HN-8 cells. The AGO2-RNA immunoprecipitation (RIP) assay revealed that hsa_circ_0000825 was significantly enriched in the AGO2-precipitated complex in both TU177 and AMC-HN-8 cells, suggesting that this circRNA may function via a competitive endogenous RNA (ceRNA) mechanism. Next, bioinformatics analysis, biotinylated-oligo pull-down assay and dual-luciferase reporter assay verified that miR-766 could be sponged by hsa_circ_0000825 and also target 3'UTR of HOXD10 mRNA. Moreover, miR-766 was shown to be involved in the pro-oncogenic effect of hsa_circ_0000825. This occurred via the mediation of hsa_circ_0000825-enhanced HOXD10 mRNA by the ceRNA mechanism in TU177 and AMC-HN-8 cells. Besides, RNA-binding protein (RBP) ELAVL1 interacted with hsa_circ_0000825 in TU177 and AMC-HN-8 cells, as revealed through bioinformatics analysis, biotinylated-oligo pull-down assays, and RIP assays. ELAVL1 knockdown decreased cell proliferation by 38 % and 34 % in hsa_circ_0000825-overexpressed TU177 and AMC-HN-8 cells ( < 0.05). Similarly, ELAVL1 was involved in the pro-migration and pro-invasion effects of hsa_circ_0000825 overexpression. In addition, comprehensive analysis of mRNA-seq in hsa_circ_0000825-overexpressed TU177 cells, as well as catRAPID and TCGA databases, suggested that ITGB2, HOXD10, and MTCL1 might be crucial downstream target mRNAs of ELAVL1 in LSCC, participating in the hsa_circ_0000825-ELAVL1 axis pro-oncogenic effect. Taken together, hsa_circ_0000825 plays a pro-oncogenic role in LSCC via the miR-766/HOXD10 axis and ELAVL1 and may serve as a promising specific biomarker and therapeutic target for LSCC.
新出现的证据表明,环状RNA(circRNAs)参与多种恶性肿瘤的肿瘤发生和进展调控。在本研究中,我们旨在鉴定喉鳞状细胞癌(LSCC)特异性circRNAs,并探索其生物学功能及潜在分子机制。通过微阵列和qRT-PCR检测发现,与癌旁组织相比,hsa_circ_0000825在LSCC组织中显著上调。hsa_circ_0000825高表达与临床晚期、淋巴结转移及不良预后呈正相关。此外,在TU177和AMC-HN-8细胞中过表达hsa_circ_0000825可促进细胞增殖。Transwell实验显示,过表达hsa_circ_0000825可增强TU177和AMC-HN-8细胞的迁移和侵袭能力。相反,敲低hsa_circ_0000825则产生相反效果。将过表达hsa_circ_0000825的TU177细胞接种于BALB/c裸鼠所形成的异种移植瘤,其体积和重量均大于对照组TU177细胞形成的肿瘤。机制上,核质分离实验证实hsa_circ_0000825主要位于TU177和AMC-HN-8细胞的细胞质中。AGO2-RNA免疫沉淀(RIP)实验表明,在TU177和AMC-HN-8细胞中,hsa_circ_0000825在AGO2沉淀复合物中显著富集,提示该circRNA可能通过竞争性内源RNA(ceRNA)机制发挥作用。接下来,生物信息学分析、生物素化寡核苷酸下拉实验及双荧光素酶报告基因实验证实,hsa_circ_0000825可吸附miR-766,且miR-766可靶向HOXD10 mRNA的3'UTR。此外,miR-766参与了hsa_circ_0000825的促癌作用。在TU177和AMC-HN-8细胞中,hsa_circ_0000825通过ceRNA机制增强HOXD10 mRNA表达,进而介导了这一过程。此外,通过生物信息学分析、生物素化寡核苷酸下拉实验及RIP实验发现,RNA结合蛋白(RBP)ELAVL1在TU177和AMC-HN-8细胞中与hsa_circ_0000825相互作用。在过表达hsa_circ_0000825的TU177和AMC-HN-8细胞中,敲低ELAVL1可使细胞增殖分别降低38%和34%(P<0.05)。同样,ELAVL1参与了hsa_circ_0000825过表达所导致的促迁移和促侵袭作用。此外,对过表达hsa_circ_0000825的TU177细胞的mRNA测序以及catRAPID和TCGA数据库的综合分析表明,ITGB2、HOXD10和MTCL1可能是LSCC中ELAVL1的关键下游靶mRNA,参与了hsa_circ_0000825-ELAVL1轴的促癌作用。综上所述,hsa_circ_0000825通过miR-766/HOXD10轴和ELAVL1在LSCC中发挥促癌作用,有望成为LSCC特异性生物标志物和治疗靶点。