Wu Wen, Hu Xia, Zeng Zhen, Wu Di, Li Hanmei, Li Hui
Sichuan Industrial Institute of Antibiotics, School of Pharmacy, Chengdu University, Chengdu610106, China.
Meat Processing Key Laboratory of Sichuan Province, School of Food and Biological Engineering, Chengdu University, Chengdu610106, China.
J Phys Chem B. 2023 Feb 2;127(4):874-883. doi: 10.1021/acs.jpcb.2c06488. Epub 2023 Jan 19.
Sorafenib (Sor) is a multitarget kinase inhibitor used clinically to treat hepatocellular carcinoma and renal cancer. In this study, the interaction mechanism of Sor with c-MYC G-quadruplexes (G4) was investigated at the molecular level by computer-aided means and experiments. Molecular docking results predicted the binding of Sor to the groove of G4. Molecular dynamics (MD) simulations were used to evaluate the effect of ligand binding to G4. Ultraviolet (UV), fluorescence spectroscopy, and viscosity experiments showed that the binding site was in the groove. The UV and fluorescence titration results showed that compared with traditional G4 ligands represented by compound -tetra (-methyl-4-pyridyl) porphine (TmPyP4), Sor has a lower affinity for G4. Likewise, results from fluorescence resonance energy transfer (FRET) experiments suggested that Sor could have a limited ability to stabilize G4, but it was not as prominent as that of TmPyP4. Time-resolved fluorescence spectroscopy again supported the results from steady-state fluorescence spectroscopy, indicating that a static quenching mechanism mainly drove the process. Studying the interaction mechanism of Sor and c-MYC may inspire the screening of new, selective c-MYC G4 ligands and provide ideas for the design of drugs with good stability, low toxicity, and specific targeting of G4.
索拉非尼(Sor)是一种临床上用于治疗肝细胞癌和肾癌的多靶点激酶抑制剂。在本研究中,通过计算机辅助手段和实验,在分子水平上研究了索拉非尼与c-MYC G-四链体(G4)的相互作用机制。分子对接结果预测索拉非尼与G4的沟槽结合。分子动力学(MD)模拟用于评估配体与G4结合的效果。紫外(UV)、荧光光谱和黏度实验表明结合位点在沟槽中。紫外和荧光滴定结果表明,与以化合物四(-甲基-4-吡啶基)卟啉(TmPyP4)为代表的传统G4配体相比,索拉非尼对G4的亲和力较低。同样,荧光共振能量转移(FRET)实验结果表明,索拉非尼稳定G4的能力有限,但不如TmPyP4突出。时间分辨荧光光谱再次支持稳态荧光光谱的结果,表明主要是静态猝灭机制驱动了这一过程。研究索拉非尼与c-MYC的相互作用机制可能会启发新型、选择性c-MYC G4配体的筛选,并为设计稳定性好、毒性低且对G4具有特异性靶向作用的药物提供思路。