Department of Thoracic Surgery, Thoracic Cancer Center, The Sixth Affiliated Hospital of Sun Yat-sen University, Guangzhou, China.
Department of Thoracic Surgery, Affiliated Cancer Hospital and Institute of Guangzhou Medical University, Guangzhou, China.
Neoplasma. 2022 Mar;69(2):392-403. doi: 10.4149/neo_2022_211013N1449. Epub 2022 Feb 28.
Circular RNA is related to the tumorigenesis of various cancers. Circular RNA hsa_circ_0020123 (circ_0020123) has been uncovered to promote non-small cell lung cancer (NSCLC) progression. However, the regulatory mechanism of circ_0020123 in NSCLC is unclear. The quantitative real-time polymerase chain reaction was employed to detect the levels of circ_0020123, microRNA (miR)-193a-3p, and IRF4 interferon regulatory factor 4 (IRF4) in NSCLC tissues and cells. Loss-of-function experiments were performed to analyze the impacts of circ_0020123 silencing on NSCLC cell malignancy, autophagy, and glycolysis. Protein levels were detected using western blotting. The regulatory mechanism of circ_0020123 was analyzed by bioinformatics analysis and validated by the dual-luciferase reporter, RNA immunoprecipitation assay, and RNA pull-down assay. Xenograft assay was performed to verify the biological function of circ_0020123. We observed an overt elevation in circ_0020123 expression in NSCLC samples and cells, and NSCLC patients with high circ_0020123 expression had a poor prognosis. Circ_0020123 knockdown constrained xenograft tumor growth in vivo and curbed cell proliferation, migration, and glycolysis, and accelerated cell apoptosis and autophagy in NSCLC cells in vitro. Circ_0020123 could absorb miR-193a-3p to regulate IRF4 expression. miR-193a-3p silencing overturned circ_0020123 knockdown-mediated impacts on NSCLC cell malignancy, autophagy, and glycolysis. And IRF4 overexpression reversed miR-193a-3p mimic-mediated effects on NSCLC cell malignancy, autophagy, and glycolysis. Circ_0020123 promoted glycolysis and tumor growth by upregulating IRF4 through sequestering miR-193a-3p in NSCLC, offering a novel mechanism by which circ_0020123 is responsible for the malignancy, autophagy, and glycolysis of NSCLC cells.
环状 RNA 与各种癌症的发生有关。环状 RNA hsa_circ_0020123(circ_0020123)已被发现可促进非小细胞肺癌(NSCLC)的进展。然而,circ_0020123 在 NSCLC 中的调控机制尚不清楚。采用实时定量聚合酶链反应检测 NSCLC 组织和细胞中 circ_0020123、微小 RNA(miR)-193a-3p 和干扰素调节因子 4(IRF4)的水平。通过失活实验分析了 circ_0020123 沉默对 NSCLC 细胞恶性、自噬和糖酵解的影响。通过蛋白质印迹法检测蛋白水平。通过生物信息学分析和双荧光素酶报告基因、RNA 免疫沉淀实验和 RNA 下拉实验验证 circ_0020123 的调控机制。进行异种移植实验验证 circ_0020123 的生物学功能。我们观察到 NSCLC 样本和细胞中 circ_0020123 表达明显升高,circ_0020123 高表达的 NSCLC 患者预后不良。circ_0020123 敲低抑制体内异种移植肿瘤生长,并抑制 NSCLC 细胞体外增殖、迁移和糖酵解,加速细胞凋亡和自噬。circ_0020123 可吸收 miR-193a-3p 来调节 IRF4 表达。miR-193a-3p 沉默逆转了 circ_0020123 敲低对 NSCLC 细胞恶性、自噬和糖酵解的影响。IRF4 过表达逆转了 miR-193a-3p 模拟对 NSCLC 细胞恶性、自噬和糖酵解的影响。Circ_0020123 通过与 miR-193a-3p 结合来上调 IRF4,从而促进 NSCLC 中的糖酵解和肿瘤生长,为 circ_0020123 负责 NSCLC 细胞恶性、自噬和糖酵解提供了新的机制。