Sun Xiang-Yu, Zhao Ping, Jin Shu-Fang, Liu Min-Chao, Wang Xia-Hong, Huang Yu-Min, Cheng Zhen-Feng, Yan Si-Qi, Li Yan-Yu, Chen Ya-Qing, Zhong Yan-Mei
School of Chemistry and Chemical Engineering, Guangdong Pharmaceutical University, No. 280, Waihuandong Road, Education Mega Centre, Guangzhou 510006, PR China; Guangdong Cosmetics Engineering & Technology Research Center, Zhongshan 528458, China.
School of Chemistry and Chemical Engineering, Guangdong Pharmaceutical University, No. 280, Waihuandong Road, Education Mega Centre, Guangzhou 510006, PR China; Guangdong Cosmetics Engineering & Technology Research Center, Zhongshan 528458, China; College of Pharmacy, University of Arizona, Tucson, AZ 85721, USA.
J Photochem Photobiol B. 2017 Aug;173:606-617. doi: 10.1016/j.jphotobiol.2017.06.036. Epub 2017 Jul 4.
DNA polymorphism exerts a fascination on a large scientific community. Without crystallographic structural data, clarification of the binding modes between G-quadruplex (G4) and ligand (complex) is a challenging job. In the present work, three porphyrin compounds with different flexible carbon chains (arms) were designed, synthesized and characterized. Their binding, folding and stabilizing abilities to human telomeric G4 DNA structures were comparatively researched. Positive charges at the end of the flexible carbon chains seem to be favorable for the DNA-porphyrin interactions, which were evidenced by the spectral results and further confirmed by the molecular docking calculations. Biological function analysis demonstrated that these porphyrins show no substantial inhibition to Hela, A549 and BEL 7402 cancer cell lines under dark while exhibit broad inhibition under visible light. This significantly enhanced photocytotoxicity relative to the dark control is an essential property of photochemotherapeutic agents. The feature of the flexible arms emerges as critical influencing factors in the cell photocytotoxicity. Moreover, an ROS-mediated mitochondrial dysfunction pathway was suggested for the cell apoptosis induced by these flexible-armed porphyrins. It is found that the porphyrins with positive charges located at the end of the flexible arms represent an exciting opportunity for photochemotherapeutic anti-cancer drug design.
DNA多态性吸引了众多科学界人士。在缺乏晶体学结构数据的情况下,阐明G-四链体(G4)与配体(复合物)之间的结合模式是一项具有挑战性的工作。在本研究中,设计、合成并表征了三种具有不同柔性碳链(臂)的卟啉化合物。比较研究了它们对人端粒G4 DNA结构的结合、折叠和稳定能力。柔性碳链末端的正电荷似乎有利于DNA-卟啉相互作用,光谱结果证明了这一点,分子对接计算进一步证实了这一点。生物学功能分析表明,这些卟啉在黑暗条件下对Hela、A549和BEL 7402癌细胞系没有显著抑制作用,而在可见光下表现出广泛的抑制作用。相对于黑暗对照组,这种显著增强的光细胞毒性是光化学治疗剂的一个重要特性。柔性臂的特征成为细胞光细胞毒性的关键影响因素。此外,还提出了一种由活性氧介导的线粒体功能障碍途径来解释这些柔性臂卟啉诱导的细胞凋亡。研究发现,柔性臂末端带有正电荷的卟啉为光化学治疗抗癌药物设计提供了一个令人兴奋的机会。