Gupta Saurabh, Luxami Vijay, Paul Kamaldeep
Department of Chemistry and Biochemistry, Thapar Institute of Engineering and Technology, Patiala-147001, India.
ACS Appl Bio Mater. 2025 Feb 17;8(2):1077-1096. doi: 10.1021/acsabm.4c01388. Epub 2025 Jan 28.
It has been well accumulated that G-quadruplex (G4-DNA) has great anticancer relevance, and various heterocyclic moieties have been synthesized and examined as potent G4-DNA binders with promising anticancer activity. Here, we have synthesized a series of naphthalimide-triazole-coumarin conjugates by substituting various amines and further examine their anticancer activity against 60 human cancer cell lines at 10 μM. One and five dose concentration results reveal low values of MG-MID GI for compounds including (3.18 μM), (13.11 μM), (7.68 μM) and (1.75 μM). Further cell apoptosis manifests that all compounds can induce cell apoptosis in cancer cells by stabilizing the c-MYC promoter G-quadruplex. Therefore, the G-quadruplex-mediated pathway may be responsible for the apoptosis that these naphthalimide-coumarin compounds caused in cancer cells. Therefore, multispectroscopic techniques are employed to evaluate the binding of molecules with c-MYC G4-DNA where all four molecules readily bind to G4-DNA and stabilize it with a high binding constant, leading to inhibition of cancer cells and apoptosis of cancer cells. Binding studies toward ct-DNA disclose that these compounds do not interact with ds-DNA and thus selectively target G4-DNA to exert their anticancer activity. All the active compounds have greater affinity toward Human Serum Albumin (HSA) and can readily bind with HSA with a binding constant of 12 × 10 M (), 13.0 × 10 M (), 14.2 × 10 M (), 16.3 × 10 M (). Thus, the results disclose that inhibition and killing of cancer cells by these derivatives feasibly occur due to their ability to interact with c-MYC G-quadruplex forming promoters and their high affinity toward HSA unfold potent anticancer agents and can be taken further for clinical trials.
已有充分积累表明,G-四链体(G4-DNA)具有重大的抗癌相关性,并且已经合成了各种杂环部分并作为具有潜在抗癌活性的有效G4-DNA结合剂进行了研究。在此,我们通过取代各种胺合成了一系列萘二甲酰亚胺-三唑-香豆素共轭物,并在10 μM浓度下进一步研究了它们对60种人类癌细胞系的抗癌活性。单剂量和五剂量浓度结果显示,包括(3.18 μM)、(13.11 μM)、(7.68 μM)和(1.75 μM)在内的化合物的MG-MID GI值较低。进一步的细胞凋亡表明,所有化合物都可以通过稳定c-MYC启动子G-四链体来诱导癌细胞凋亡。因此,G-四链体介导的途径可能是这些萘二甲酰亚胺-香豆素化合物在癌细胞中引起凋亡的原因。因此,采用多光谱技术评估分子与c-MYC G4-DNA的结合,其中所有四种分子都能轻松结合到G4-DNA上,并以高结合常数使其稳定,从而导致癌细胞的抑制和凋亡。对ct-DNA的结合研究表明,这些化合物不与ds-DNA相互作用,因此选择性地靶向G4-DNA以发挥其抗癌活性。所有活性化合物对人血清白蛋白(HSA)具有更高的亲和力,并且可以以12×10 M()、13.0×10 M()、14.2×10 M()、16.3×10 M()的结合常数轻松与HSA结合。因此,结果表明,这些衍生物对癌细胞的抑制和杀伤可能是由于它们与形成c-MYC G-四链体的启动子相互作用的能力以及它们对HSA的高亲和力,从而展现出强大的抗癌剂作用,并且可以进一步用于临床试验。