a College of Chemistry and Chemical Engineering , Lanzhou University , No.222, Tianshui Road (South), Lanzhou , Gansu , 730000 , People's Republic of China.
J Biomol Struct Dyn. 2018 May;36(6):1529-1549. doi: 10.1080/07391102.2017.1329095. Epub 2017 May 31.
Focal adhesion kinase (FAK) is one kind of tyrosine kinases that modulates integrin and growth factor signaling pathways, which is a promising therapeutic target because of involving in cancer cell migration, proliferation, and survival. To investigate the mechanism between FAK and triazinic inhibitors and design high activity inhibitors, a molecular modeling integrated with 3D-QSAR, molecular docking, molecular dynamics simulations, and binding free energy calculations was performed. The optimum CoMFA and CoMSIA models showed good reliability and satisfactory predictability (with Q = 0.663, R = 0.987, [Formula: see text] = 0.921 and Q = 0.670, R = 0.981, [Formula: see text] = 0.953). Its contour maps could provide structural features to improve inhibitory activity. Furthermore, a good consistency between contour maps, docking, and molecular dynamics simulations strongly demonstrates that the molecular modeling is reliable. Based on it, we designed several new compounds and their inhibitory activities were validated by the molecular models. We expect our studies could bring new ideas to promote the development of novel inhibitors with higher inhibitory activity for FAK.
黏着斑激酶(FAK)是一种酪氨酸激酶,可调节整合素和生长因子信号通路,由于涉及癌细胞迁移、增殖和存活,因此是一种很有前途的治疗靶点。为了研究 FAK 与三唑类抑制剂之间的作用机制并设计高活性抑制剂,进行了分子建模与 3D-QSAR、分子对接、分子动力学模拟和结合自由能计算的整合研究。最佳 CoMFA 和 CoMSIA 模型显示出良好的可靠性和令人满意的可预测性(Q=0.663、R=0.987、[Formula: see text]=0.921 和 Q=0.670、R=0.981、[Formula: see text]=0.953)。其轮廓图可以提供结构特征,以提高抑制活性。此外,轮廓图、对接和分子动力学模拟之间的良好一致性强烈证明了分子模型的可靠性。在此基础上,我们设计了几种新的化合物,并通过分子模型验证了它们的抑制活性。我们希望我们的研究能够为开发具有更高抑制活性的新型 FAK 抑制剂提供新的思路。