Department of Chemical Sciences, University of Naples Federico II, via Cintia, 21, 80126 Naples, Italy.
CIRPEB, University of Naples Federico II, Naples, Italy.
Org Biomol Chem. 2021 Nov 25;19(45):9953-9965. doi: 10.1039/d1ob01995c.
Aiming at discovering novel, putative anticancer drugs featuring low-to-null side effects, natural compounds isolated from were studied here for their ability to target G-quadruplex structures originating from cancer-related telomeric and oncogene DNA sequences. Particularly, various dihydrophenanthrene, benzocoumarin and dihydrodibenzoxepin derivatives were firstly screened by the affinity chromatography-based G4-CPG assay, and the compound with the highest affinity and selectivity for G-quadruplexes (named J10) was selected for further studies. Fluorescence spectroscopy and circular dichroism experiments corroborated its capability to selectively recognize and stabilize G-quadruplexes over duplex DNA, also showing a preference for parallel G-quadruplexes. Molecular docking proved that the selective G-quadruplex interactions over duplex interactions could be due to the ability of J10 to bind to the grooves of the telomeric and oncogene G-quadruplex structures. Finally, biological assays demonstrated that J10 induces significant antiproliferative effects on human leukemia cells, with no relevant effects on healthy human fibroblasts. Interestingly, J10 exerts its antiproliferative action on tumor cells by activating the apoptotic pathway.
为了发现具有低至无副作用的新型潜在抗癌药物,本研究从 中分离出的天然化合物,研究其靶向源自癌症相关端粒和癌基因 DNA 序列的 G-四链体结构的能力。特别是,通过基于亲和层析的 G4-CPG 测定法首次筛选了各种二氢菲、苯并香豆素和二氢二苯并氧杂环庚烷衍生物,选择对 G-四链体具有最高亲和力和选择性的化合物(命名为 J10)进行进一步研究。荧光光谱和圆二色性实验证实了它选择性识别和稳定 G-四链体而不是双链 DNA 的能力,也显示出对平行 G-四链体的偏好。分子对接证明,选择性 G-四链体与双链相互作用的相互作用可能是由于 J10 结合到端粒和癌基因 G-四链体结构的沟槽中的能力。最后,生物测定表明 J10 可显著诱导人白血病细胞的增殖抑制作用,而对健康人成纤维细胞无相关作用。有趣的是,J10 通过激活凋亡途径对肿瘤细胞发挥其增殖抑制作用。