Department of Pharmacoinformatics, National Institute of Pharmaceutical Education and Research (NIPER), Sector 67, S.A.S. Nagar, Mohali, Punjab, 160062, India.
Department of Medicinal Chemistry, National Institute of Pharmaceutical Education and Research (NIPER), Sector 67, S.A.S. Nagar, Mohali, Punjab, 160062, India.
J Mol Graph Model. 2019 Jan;86:1-18. doi: 10.1016/j.jmgm.2018.09.013. Epub 2018 Sep 27.
Merbarone is a derivative of thiobarbituric acid, possessing catalytic inhibitory potential against human topoisomerase IIα (hTopoIIα). Merbarone was reported to inhibit DNA cleavage by hTopoIIα. It is important to understand the molecular mechanism of hTopoIIα inhibition by merbarone, as these details guide the rational design of new ligands. In this work, a systematic pharmacoinformatics analysis has been reported to analyze the merbarone-hTopoIIα interactions and to identify merbarone analogs as potential hTopoIIα inhibitors. The reported crystal structure of hTopoIIα-DNA complex (PDB ID: 4FM9) is not suitable for analyzing the merbarone-binding domain, because it is a biological assembly of hTopoIIα in C-gate open conformation. Therefore, 3D structure of hTopoIIα-DNA complex suitable for molecular modeling analysis at merbarone binding site was first generated. Using this generated complex, molecular docking analysis and molecular dynamics simulations were performed to explore the effect of merbarone on hTopoIIα-DNA complex. The binding energy for the enol form of merbarone with hTopoIIα-DNA was estimated to be -51.28 kcal/mol. The explored binding site and identified molecular recognition interactions were in accordance with the previously reported interference in the DNA-cleavage by merbarone. Virtual screening was performed using drug likeness filters, toxicity filters and ADMET descriptor based filters followed by molecular docking (ZINC database). Sixteen compounds were identified as merbarone-functional analogs suitable for hTopoIIα inhibition. These identified molecules can be considered for further evaluation of their anti-hTopoIIα activity.
美贝丙泊酚是硫代巴比妥酸的衍生物,对人拓扑异构酶 IIα(hTopoIIα)具有催化抑制潜力。有报道称美贝丙泊酚可抑制 hTopoIIα 介导的 DNA 断裂。了解美贝丙泊酚抑制 hTopoIIα 的分子机制非常重要,因为这些细节可以指导新配体的合理设计。在这项工作中,我们进行了系统的药物信息学分析,以分析美贝丙泊酚与 hTopoIIα 的相互作用,并确定美贝丙泊酚类似物作为潜在的 hTopoIIα 抑制剂。已报道的 hTopoIIα-DNA 复合物(PDB ID:4FM9)晶体结构不适合分析美贝丙泊酚结合域,因为它是 hTopoIIα 在 C 门开放构象下的生物学组装。因此,首先生成了适合 hTopoIIα-DNA 复合物在美贝丙泊酚结合位点进行分子建模分析的 3D 结构。使用该生成的复合物,进行了分子对接分析和分子动力学模拟,以探索美贝丙泊酚对 hTopoIIα-DNA 复合物的影响。美贝丙泊酚烯醇形式与 hTopoIIα-DNA 的结合能估计为-51.28 kcal/mol。探索的结合位点和确定的分子识别相互作用与美贝丙泊酚先前报道的对 DNA 切割的干扰一致。随后进行虚拟筛选,使用类药性过滤器、毒性过滤器和基于 ADMET 描述符的过滤器以及分子对接(ZINC 数据库)。鉴定出 16 种化合物作为美贝丙泊酚功能类似物,适合抑制 hTopoIIα。这些鉴定出的分子可以进一步评估其抗 hTopoIIα 活性。