Shan Chan, Yan Jin-Wu, Wang Yu-Qing, Che Tong, Huang Zhou-Li, Chen Ai-Chun, Yao Pei-Fen, Tan Jia-Heng, Li Ding, Ou Tian-Miao, Gu Lian-Quan, Huang Zhi-Shu
School of Pharmaceutical Sciences, Sun Yat-sen University , Guangzhou 510006, People's Republic of China.
Institute for Translation Medicine, Qingdao University , Shandong 266021, People's Republic of China.
J Med Chem. 2017 Feb 23;60(4):1292-1308. doi: 10.1021/acs.jmedchem.6b01218. Epub 2017 Feb 13.
Transcriptional control of c-myc oncogene is an important strategy for antitumor drug design. G-quadruplexes in the promoter region have been proven to be the transcriptional down-regulator of this gene. The transcriptional factor NM23-H2 can reactivate c-myc transcription by unwinding the G-quadruplex structure. Thus, down-regulation of c-myc transcription via disrupting G-quadruplex-NM23-H2 interaction might be a potential approach for cancer therapy. Here, a series of new isaindigotone derivatives were designed and synthesized based on our previous study. The abilities of these derivatives on interacting with G-quadruplexes or NM23-H2, and disrupting G-quadruplex-NM23-H2 interaction were evaluated. Among these derivatives, 19d and 22d showed remarkable abilities on disrupting G-quadruplex-NM23-H2 interaction. They exhibited significant effects on c-myc-relating processes in SiHa cells, including inhibiting the transcription and translation, inhibiting cellular proliferation, inducing apoptosis, and regulating cell cycle. Our findings provided the basis for the anticancer strategy based on c-myc transcriptional regulation via small molecules disrupting G-quadruplex-protein interaction.
c-myc癌基因的转录调控是抗肿瘤药物设计的重要策略。启动子区域的G-四链体已被证明是该基因的转录下调因子。转录因子NM23-H2可通过解开G-四链体结构来重新激活c-myc转录。因此,通过破坏G-四链体与NM23-H2的相互作用来下调c-myc转录可能是一种潜在的癌症治疗方法。在此,基于我们之前的研究设计并合成了一系列新的靛玉红衍生物。评估了这些衍生物与G-四链体或NM23-H2相互作用以及破坏G-四链体与NM23-H2相互作用的能力。在这些衍生物中,19d和22d在破坏G-四链体与NM23-H2相互作用方面表现出显著能力。它们对SiHa细胞中与c-myc相关的过程具有显著影响,包括抑制转录和翻译、抑制细胞增殖、诱导凋亡以及调节细胞周期。我们的研究结果为基于小分子破坏G-四链体与蛋白质相互作用来调控c-myc转录的抗癌策略提供了依据。