Quan Yang Ping, Cheng Li Ping, Wang Tian Chi, Pang Wan, Wu Fan Hong, Huang Jin Wen
School of Chemical and Environmental Engineering , Shanghai Institute of Technology , Shanghai 201418 , China . Email:
Medchemcomm. 2017 Dec 6;9(2):316-327. doi: 10.1039/c7md00416h. eCollection 2018 Feb 1.
As the major structural component of microtubules, tubulin is an interesting target for the development of anticancer agents. In this study, 64 tubulin polymerization inhibitors of five-membered heterocycle-based combretastatin A-4 analogues were studied by a combination of molecular modeling techniques including 3D-QSAR, molecular docking, and molecular dynamics (MD) simulation. The CoMFA (comparative molecular field analysis) and CoMSIA (comparative molecular similarity indices analysis) models were established with desirable statistical parameters and excellent predictive ability. 20 ns MD simulations were successfully performed to confirm the detailed binding mode and validate the rationality of docking results. Combining the binding free energy calculations and 3D-QSAR results, some new heterocycle-based combretastatin A-4 analogues were designed. Three of them were synthesized and biologically evaluated. Compound displayed potent antiproliferative activity (IC value of 1.31 μM against HepG2 cells, IC value of 1.37 μM against A549 cells) and inhibition of tubulin polymerization activity (IC value of 0.86 μM). Compound also presented good activity against HepG2 cells (IC value of 4.75 μM). The experimental results demonstrated that the built models were effective for the development of novel anticancer agents and tubulin inhibitors.
作为微管的主要结构成分,微管蛋白是抗癌药物开发中一个有趣的靶点。在本研究中,通过结合包括3D-QSAR、分子对接和分子动力学(MD)模拟在内的分子建模技术,对64种基于五元杂环的康普瑞他汀A-4类似物的微管蛋白聚合抑制剂进行了研究。建立了具有理想统计参数和出色预测能力的CoMFA(比较分子场分析)和CoMSIA(比较分子相似性指数分析)模型。成功进行了20 ns的MD模拟,以确认详细的结合模式并验证对接结果的合理性。结合结合自由能计算和3D-QSAR结果,设计了一些新的基于杂环的康普瑞他汀A-4类似物。其中三种被合成并进行了生物学评估。化合物表现出强大的抗增殖活性(对HepG2细胞的IC值为1.31 μM,对A549细胞的IC值为1.37 μM)和微管蛋白聚合抑制活性(IC值为0.86 μM)。化合物对HepG2细胞也表现出良好的活性(IC值为4.75 μM)。实验结果表明,所建立的模型对于新型抗癌药物和微管蛋白抑制剂的开发是有效的。