化学
微管蛋白
对接(动物)
立体化学
细胞毒性
晶体结构
IC50型
铅化合物
微管
细胞培养
聚合
组合化学
体外
结晶学
生物化学
有机化学
聚合物
医学
生物
细胞生物学
遗传学
护理部
作者
Zhongpeng Ding,Mingxu Ma,Changjiang Zhong,Shixiao Wang,Zhangyu Fu,Yingwei Hou,Yuqian Liu,Lili Zhong,Yanyan Chu,Feng Li,Cai Song,Yuxi Wang,Jinliang Yang,Wenbao Li
标识
DOI:10.1016/j.bmc.2019.115186
摘要
The co-crystal structure of Compound 6b with tubulin was prepared and solved for indicating the binding mode and for further optimization. Based on the co-crystal structures of tubulin with plinabulin and Compound 6b, a total of 27 novel A/B/C-rings plinabulin derivatives were designed and synthesized. Their biological activities were evaluated against human lung cancer NCI-H460 cell line. The optimum phenoxy-diketopiperazine-type Compound 6o exhibited high potent cytotoxicity (IC50 = 4.0 nM) through SAR study of three series of derivatives, which was more potent than plinabulin (IC50 = 26.2 nM) and similar to Compound 6b (IC50 = 3.8 nM) against human lung cancer NCI-H460 cell line. Subsequently, the Compound 6o was evaluated against other four human cancer cell lines. Both tubulin polymerization assay and immunofluorescence assay showed that Compound 6o could inhibit microtubule polymerization efficiently. Furthermore, theoretical calculation of the physical properties and molecular docking were elucidated for these plinabulin derivatives. The binding mode of Compound 6o was similar to Compound 6b based on the result of molecular docking. The theoretical calculated LogPo/w and PCaco of Compound 6o were better than Compound 6b, which could enhance its cytostatic activity. Therefore, Compound 6o might be developed as a novel potent anti-microtubule agent.
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