Department of Thoracic Surgery, Shaoxing People's Hospital, No. 568 Zhongxing North Road, Yuecheng District, Shaoxing, 312000, China.
Shaoxing University School of Medicine, Shaoxing, 312000, China.
J Bioenerg Biomembr. 2024 Apr;56(2):181-191. doi: 10.1007/s10863-024-10004-3. Epub 2024 Feb 27.
Lung adenocarcinoma (LUAD) is one of the most lethal and common malignancies. The energy metabolism of LUAD is a critical factor affecting its malignant progression, and research on this topic can aid in the development of novel cancer treatment targets. Bioinformatics analysis of the expression of long non-coding RNA (lncRNA) LINC00665 in LUAD was performed. Downstream regulatory molecules of LINC00665 were predicted using the StarBase database. We used quantitative reverse transcription polymerase chain reaction and western blot to measure the expression at mRNA and protein levels, respectively. The effects of the LINC00665/let-7c-5p/HMMR axis on cell viability in vitro were tested by CCK-8 assay. The regulatory effects on glycolysis were analyzed by extracellular acidification rate, oxygen consumption rate, glucose uptake, adenosine triphosphate production, and lactate production. The predicted competitive endogenous RNA mechanism between LINC00665 and let-7c-5p/HMMR was verified by a dual-luciferase reporter gene assay. LINC00665 was upregulated in LUAD. Silencing LINC00665 inhibited tumor proliferation and reduced the glycolytic activity of tumor cells. Additionally, the expression of LINC00665 had a negative correlation with that of let-7c-5p, while the expression of HMMR was remarkably inhibited by let-7c-5p. HMMR could affect the development of LUAD by influencing glycolytic capacity. Mechanistically, LINC00665 acted as a molecular sponge to absorb let-7c-5p and targeted HMMR. Transfection of let-7c-5p inhibitor or overexpression of HMMR plasmid could reverse the inhibition in proliferation and glycolysis of LUAD cells induced by silencing of LINC00665. In summary, this study demonstrated that the LINC00665/let-7c-5p/HMMR regulatory axis promoted the tumorigenesis of LUAD by enhancing aerobic glycolysis, suggesting that this regulatory axis was an effective target for inhibiting LUAD progression and providing theoretical support for the development of new drugs for LUAD.
肺腺癌 (LUAD) 是最致命和最常见的恶性肿瘤之一。LUAD 的能量代谢是影响其恶性进展的关键因素,对这一课题的研究有助于开发新的癌症治疗靶点。本研究通过生物信息学分析,检测了长链非编码 RNA (lncRNA) LINC00665 在 LUAD 中的表达情况。通过 StarBase 数据库预测 LINC00665 的下游调控分子。我们分别采用实时定量逆转录聚合酶链反应和 Western blot 检测 mRNA 和蛋白水平的表达。通过 CCK-8 试验检测 LINC00665/let-7c-5p/HMMR 轴在体外对细胞活力的影响。通过细胞外酸化率、耗氧量、葡萄糖摄取量、三磷酸腺苷产量和乳酸产量分析糖酵解的调控作用。通过双荧光素酶报告基因实验验证 LINC00665 与 let-7c-5p/HMMR 之间竞争内源性 RNA 的预测机制。
结果显示,LINC00665 在 LUAD 中上调。沉默 LINC00665 抑制肿瘤增殖,并降低肿瘤细胞的糖酵解活性。此外,LINC00665 的表达与 let-7c-5p 的表达呈负相关,而 HMMR 的表达则明显受到 let-7c-5p 的抑制。HMMR 可通过影响糖酵解能力影响 LUAD 的发生发展。机制上,LINC00665 作为分子海绵吸附 let-7c-5p,并靶向 HMMR。转染 let-7c-5p 抑制剂或过表达 HMMR 质粒可逆转沉默 LINC00665 引起的 LUAD 细胞增殖和糖酵解抑制。
综上所述,本研究表明 LINC00665/let-7c-5p/HMMR 调控轴通过增强有氧糖酵解促进 LUAD 的肿瘤发生,提示该调控轴是抑制 LUAD 进展的有效靶点,为 LUAD 新药的开发提供了理论支持。