Discipline of Biosciences and Biomedical Engineering, Indian Institute of Technology Indore, Simrol, Indore, 453552, India.
Discipline of Chemistry, Indian Institute of Technology Indore, Simrol, Indore, 453552, India.
Chem Biodivers. 2019 Nov;16(11):e1900315. doi: 10.1002/cbdv.201900315. Epub 2019 Oct 25.
Here, we report the synthesis and characterization of four new aroyl-hydrazone derivatives L -L , and their structural as well as biological activities have been explored. In addition to docking with bovine serum albumin (BSA) and duplex DNA, the experimental results demonstrate the effective binding of L -L with BSA protein and calf thymus DNA (ct-DNA) which is in agreement with the docking results. Further biological activities of L -L have been examined through molecular docking with different proteins which are involved in the propagation of viral or cancer diseases. L shows best binding affinity with influenza A virus polymerase PB2 subunit (2VY7) with binding energy -11.42 kcal/mol and inhibition constant 4.23 nm, whereas L strongly bind with the hepatitis C virus NS5B polymerase (2WCX) with binding energy -10.47 kcal/mol and inhibition constant 21.06 nm. Ligand L binds strongly with TGF-beta receptor 1 (3FAA) and L with cancer-related EphA2 protein kinases (1MQB) with binding energy -10.61 kcal/mol, -10.02 kcal/mol and inhibition constant 16.67 nm and 45.41 nm, respectively. The binding energies of L -L are comparable with binding energies of their proven inhibitors. L , L and L can be considered as both 3FAA and 1MQB dual targeting anticancer agents, while L and L are both 2VY7 and 2WCX dual targeting antiviral agents. On the other side, L and L target only one virus related target (2WCX). Furthermore, the geometry optimizations of L -L were performed via density functional theory (DFT). Moreover, all four ligands (L -L ) were characterized by NMR, FT-IR, ESI-MS, elemental analysis and their molecular structures were validated by single crystal X-ray diffraction studies.
在这里,我们报告了四个新的酰腙衍生物 L -L 的合成和表征,并探索了它们的结构和生物活性。除了与牛血清白蛋白(BSA)和双链 DNA 对接外,实验结果表明 L -L 与 BSA 蛋白和小牛胸腺 DNA(ct-DNA)的有效结合与对接结果一致。进一步通过与参与病毒或癌症疾病传播的不同蛋白质的分子对接研究了 L -L 的进一步的生物活性。L 与流感 A 病毒聚合酶 PB2 亚基(2VY7)具有最佳的结合亲和力,结合能为-11.42 kcal/mol,抑制常数为 4.23 nm,而 L 与丙型肝炎病毒 NS5B 聚合酶(2WCX)强烈结合,结合能为-10.47 kcal/mol,抑制常数为 21.06 nm。配体 L 与 TGF-β受体 1(3FAA)强烈结合,L 与癌症相关的 EphA2 蛋白激酶(1MQB)强烈结合,结合能分别为-10.61 kcal/mol 和-10.02 kcal/mol,抑制常数分别为 16.67 nm 和 45.41 nm。L -L 的结合能与已证明的抑制剂的结合能相当。L 、 L 和 L 可被认为是同时靶向 3FAA 和 1MQB 的抗癌药物,而 L 和 L 是同时靶向 2VY7 和 2WCX 的抗病毒药物。另一方面,L 和 L 仅靶向一个与病毒相关的靶标(2WCX)。此外,通过密度泛函理论(DFT)对 L -L 进行了几何优化。此外,通过 NMR、FT-IR、ESI-MS、元素分析对所有四种配体(L -L )进行了表征,并通过单晶 X 射线衍射研究验证了它们的分子结构。