Department of Organic Chemistry, Indian Institute of Science, Bangalore, 560012, India.
School of Applied & Interdisciplinary Sciences Indian Association for the Cultivation of Science, Kolkata, 700032, India.
Chembiochem. 2023 Feb 14;24(4):e202200609. doi: 10.1002/cbic.202200609. Epub 2023 Jan 17.
We have examined the stabilization of higher-order noncanonical G-quadruplex (G4) DNA structures formed by the G-rich sequences in the promoter region of oncogenes such as c-MYC, c-KIT, VEGF and BCl2 by newly synthesized, novel nitrogen-containing aromatics conjugated to xanthone moiety. Compounds with N-heterocyclic substituents such as pyridine (XNiso), benzimidazole (XBIm), quinoxaline (XQX) and fluorophore dansyl (XDan) showed greater effectiveness in stabilizing the G4 DNA as well as selective cytotoxicity for cancer cells (mainly A549) over normal cells both in terms of UV-Vis spectral titrations and cytotoxicity assay. Both fluorescence spectral titrimetric measurements and circular dichroism (CD) melting experiments further substantiated the G4 stabilization phenomenon by these small-molecular ligands. In addition, these compounds could induce the formation of parallel G4 structures in the absence of any added salt condition in Tris⋅HCl buffer at 25 °C. In a polymerase stop assay, the formation of stable G4 structures in the promoter of oncogenes and halting of DNA synthesis in the presence of the above-mentioned compounds was demonstrated by using oncogene promoter as the DNA synthesis template. Apoptosis-mediated cell death of the cancer cells was proved by Annexin V-PI dual staining assay and cell-cycle arrest occurred in the S phase of the cell cycles. The plausible mode of binding involves the stacking of the xanthone core on the G4 DNA plane with the possibility of interaction with the 5'-overhang as indicated by molecular dynamics simulation studies.
我们研究了通过新合成的、含有氮原子的芳香族化合物与呫吨部分连接,稳定癌基因启动子区域富含 G 的序列形成的高级非规范 G-四链体(G4)DNA 结构。具有 N-杂环取代基的化合物,如吡啶(XNiso)、苯并咪唑(XBIm)、喹喔啉(XQX)和荧光染料丹磺酰基(XDan),在 UV-Vis 光谱滴定和细胞毒性测定中,对 G4 DNA 的稳定作用以及对癌细胞(主要是 A549)的选择性细胞毒性均优于正常细胞。荧光光谱滴定测量和圆二色性(CD)熔融实验进一步证实了这些小分子配体的 G4 稳定现象。此外,这些化合物可以在 25°C 的 Tris⋅HCl 缓冲液中,在没有任何添加盐的条件下,诱导平行 G4 结构的形成。在聚合酶停止测定中,使用癌基因启动子作为 DNA 合成模板,证明了上述化合物存在时,癌基因启动子中稳定 G4 结构的形成和 DNA 合成的停止。通过 Annexin V-PI 双重染色测定证明了癌细胞的凋亡介导的细胞死亡,并且细胞周期在 S 期发生了阻滞。可能的结合模式涉及呫吨核心与 G4 DNA 平面的堆叠,并且分子动力学模拟研究表明,与 5'-突出端的相互作用是可能的。