Design, synthesis, molecular dynamics simulation, MM/GBSA studies and kinesin spindle protein inhibitory evaluation of some 4-aminoquinoline hybrids

驱动蛋白 IC50型 ATP酶 有丝分裂 化学 孔雀绿 对接(动物) 抑制性突触后电位 计算生物学 分子动力学 细胞生物学 生物化学 生物 体外 微管 神经科学 医学 计算化学 吸附 护理部 有机化学
作者
Shriram D Ranade,Shankar G. Alegaon,Venkatasubramanian Ulaganathan,A. Soundarya Priya,Rohini S. Kavalapure,Jagdish Chand,Sunil Jalalpure,D. Vinod
出处
期刊:Computational Biology and Chemistry [Elsevier]
卷期号:105: 107881-107881
标识
DOI:10.1016/j.compbiolchem.2023.107881
摘要

The discovery of novel chemotherapeutic agents is always challenging for researchers in industry and academia. Among the recent promising anticancer therapeutic targets, an important modulatory factor in mitosis is the expression of the kinesin family motor protein (Eg5). In terms of chemotherapy treatment, mitosis has gained significant attention due to its role as one of the biological processes that can be intervened in it. This study was undertaken to design, synthesize and evaluation of 4-aminoquinoline hybrid compounds as potential Eg5 inhibitors. Based on data collected from Malachite green and steady state ATPase assays, it has been determined that compounds such as 6c, 6d, 6 g, and 6 h are sensitive to Eg5 inhibition. In special mention, compounds 4 and 6c showed promising inhibitory activity in Malachite green assay with IC50 values of 2.32 ± 0.23 µM and 1.97 ± 0.23 µM respectively. Compound 4 showed favourable inhibitory potential Steady state ATPase Assay with IC50 value of 5.39 ± 1.39 µM. We performed molecular docking, MM/GBSA calculations, and molecular dynamic simulations to evaluate the interactions between ligands and the binding site of the kinesin spindle protein to evaluate the functional consequences of these interactions. As a result of these findings, it can be concluded that these 4-amioquinoline Schiff's base hybrids may prove to be promising candidates for development as novel inhibitors of Eg5. Further in-vivo research in this area is required.
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