化学
DNA
咪唑
G-四倍体
癌基因
对接(动物)
结合选择性
癌症研究
立体化学
组合化学
生物化学
基因
生物
细胞周期
医学
护理部
作者
Liang Zeng,Qiong Wu,Teng Wang,Liping Li,Xuanhao Zhao,Kai Chen,Jiayi Qian,Yuan Li,Hui Xu,Wenjie Mei
标识
DOI:10.1016/j.bioorg.2020.104433
摘要
The G-quadruplex (G4) DNA, which has been developed as a potential anticancer target in drug screening and design, plays a crucial role in the oncogene transcription and translation. Tanshinone IIA derivatives with a planar heterocycle structure may function as G4 stabilizers. We present an innovative case of imidazole-based tanshinone IIA derivatives (1–8) especially compound 4 that improve the selectivity and the binding affinity with G4 DNA and enhance the target tumor inhibition. Cellular and in vivo experiments indicate that the tanshinone IIA derivative 4 inhibits the growth, metastasis, and angiogenesis of triple-negative breast cancer cells possibly through the stabilization of multiple G4 DNAs (e.g., c-myc, K-ras, and VEGF) to induce DNA damage. Further investigation of the intermolecular interaction and the molecular docking indicates that tanshinone IIA derivatives have better selective binding capability to various G4 DNAs than to double-stranded DNA. These findings provide guidance in modifying the molecular structures of tanshinone IIA derivatives and reveal their potential to function as specific G4 stabilizers.
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