Oghenemaro Enwa Felix, Khaleel Abdulrahman Qais, Rizaev Jasur Alimdjanovich, Roopashree R, Suliman Muath, Kazmi Syeda Wajida, Hjazi Ahmed, Rajput Pranchal, Mustafa Yasser Fakri, Abosaoda Munther Kadhim
Department of Pharmaceutical Microbiology, Faculty of Pharmacy, Delta State University, Abraka, Delta State, Nigeria.
Department of Medical Instruments Engineering, College of Engineering, University of Al Maarif, Al Anbar, 31001, Iraq.
Biochem Genet. 2025 Apr;63(2):1149-1175. doi: 10.1007/s10528-024-10997-x. Epub 2024 Dec 24.
The long non-coding RNA Growth Arrest-Specific 5 (GAS5) is pivotal in modulating key signaling pathways by functioning as a molecular sponge for microRNAs (miRNAs). GAS5 is notably recognized for its antitumor properties, primarily through its ability to sequester oncogenic miRNAs, thereby influencing critical pathways such as p53, Wnt/β-catenin, and PI3K/Akt, all of which are integral to cell proliferation, apoptosis, and metastasis. The disruption of GAS5-miRNA interactions has been implicated in various malignancies, reinforcing its potential as both a biomarker and a therapeutic target. This paper delves into the intricate signaling cascades affected by GAS5-miRNA interactions and thoroughly investigates the diagnosis and treatment prospects associated with GAS5. Moreover, it addresses both the challenges and opportunities for translational applicability of these findings in clinical environments. The study emphasizes GAS5's significance within the cancer molecular landscape and posits that precise modulation of GAS5-miRNA interactions could catalyze transformative developments in cancer diagnostics and therapeutic approaches. This comprehensive review not only highlights the critical role of non-coding RNAs in cancer biology but also aims to lay the groundwork for future investigations aimed at harnessing these insights for therapeutic interventions.
长链非编码RNA生长停滞特异性5(GAS5)通过作为微小RNA(miRNA)的分子海绵来调节关键信号通路,发挥着关键作用。GAS5因其抗肿瘤特性而备受关注,主要是通过其隔离致癌miRNA的能力,从而影响诸如p53、Wnt/β-连环蛋白和PI3K/Akt等关键通路,所有这些通路对于细胞增殖、凋亡和转移都至关重要。GAS5与miRNA相互作用的破坏与多种恶性肿瘤有关,这进一步证明了其作为生物标志物和治疗靶点的潜力。本文深入探讨了受GAS5与miRNA相互作用影响的复杂信号级联反应,并全面研究了与GAS5相关的诊断和治疗前景。此外,本文还探讨了这些研究结果在临床环境中转化应用所面临的挑战和机遇。该研究强调了GAS5在癌症分子格局中的重要性,并认为精确调节GAS5与miRNA的相互作用可能会推动癌症诊断和治疗方法的变革性发展。这篇综述不仅强调了非编码RNA在癌症生物学中的关键作用,还旨在为未来利用这些见解进行治疗干预的研究奠定基础。