Hsu Chou-Yi, Faisal Ahmed, Jumaa Sally Salih, Gilmanova Nataliya Sergeevna, Ubaid Mohammed, Athab Aya H, Mirzaei Rasoul, Karampoor Sajad
Department of Pharmacy, Chia Nan University of Pharmacy and Science, Tainan City, 71710, Taiwan.
Thunderbird School of Global Management, Arizona State University Tempe Campus, Phoenix, Arizona, 85004, USA.
Noncoding RNA Res. 2024 May 5;9(3):970-994. doi: 10.1016/j.ncrna.2024.05.001. eCollection 2024 Sep.
Cancer cells exhibit altered metabolic pathways, prominently featuring enhanced glycolytic activity to sustain their rapid growth and proliferation. Dysregulation of glycolysis is a well-established hallmark of cancer and contributes to tumor progression and resistance to therapy. Increased glycolysis supplies the energy necessary for increased proliferation and creates an acidic milieu, which in turn encourages tumor cells' infiltration, metastasis, and chemoresistance. Circular RNAs (circRNAs) have emerged as pivotal players in diverse biological processes, including cancer development and metabolic reprogramming. The interplay between circRNAs and glycolysis is explored, illuminating how circRNAs regulate key glycolysis-associated genes and enzymes, thereby influencing tumor metabolic profiles. In this overview, we highlight the mechanisms by which circRNAs regulate glycolytic enzymes and modulate glycolysis. In addition, we discuss the clinical implications of dysregulated circRNAs in cancer glycolysis, including their potential use as diagnostic and prognostic biomarkers. All in all, in this overview, we provide the most recent findings on how circRNAs operate at the molecular level to control glycolysis in various types of cancer, including hepatocellular carcinoma (HCC), prostate cancer (PCa), colorectal cancer (CRC), cervical cancer (CC), glioma, non-small cell lung cancer (NSCLC), breast cancer, and gastric cancer (GC). In conclusion, this review provides a comprehensive overview of the significance of circRNAs in cancer glycolysis, shedding light on their intricate roles in tumor development and presenting innovative therapeutic avenues.
癌细胞表现出代谢途径的改变,其显著特征是糖酵解活性增强,以维持其快速生长和增殖。糖酵解失调是癌症公认的一个标志,并且有助于肿瘤进展和对治疗的抵抗。糖酵解增加为增加的增殖提供了必要的能量,并产生了酸性环境,这反过来又促进了肿瘤细胞的浸润、转移和化疗耐药性。环状RNA(circRNAs)已成为多种生物学过程中的关键参与者,包括癌症发展和代谢重编程。本文探讨了circRNAs与糖酵解之间的相互作用,阐明了circRNAs如何调节关键的糖酵解相关基因和酶,从而影响肿瘤代谢谱。在本综述中,我们重点介绍了circRNAs调节糖酵解酶和调节糖酵解的机制。此外,我们还讨论了circRNAs失调在癌症糖酵解中的临床意义,包括它们作为诊断和预后生物标志物的潜在用途。总而言之,在本综述中,我们提供了关于circRNAs如何在分子水平上控制包括肝细胞癌(HCC)、前列腺癌(PCa)、结直肠癌(CRC)、宫颈癌(CC)、神经胶质瘤、非小细胞肺癌(NSCLC)、乳腺癌和胃癌(GC)等各种类型癌症中的糖酵解的最新发现。总之,本综述全面概述了circRNAs在癌症糖酵解中的重要性,揭示了它们在肿瘤发展中的复杂作用,并提出了创新的治疗途径。