Waseem Mohd, Thakur Jitendra K, Subbarao Naidu
School of computational and integrative sciences, Jawaharlal Nehru University, New Delhi, India.
Plant Transcription Regulation Group, International Centre for Genetic Engineering and Biotechnology, New Delhi, India.
J Biomol Struct Dyn. 2023 Jul-Aug;41(12):5744-5756. doi: 10.1080/07391102.2022.2096116. Epub 2022 Jul 9.
Lanosterol 14-α demethylase (LDM) is one of the promising drug targets of azoles antifungal. In this study, we have screened a large number of small molecules from different chemical databases (ZINC, DrugBank, ChEMBL, and ChemDiv) to find out novel and potential inhibitors of LDM. As a result, from more than a hundred thousand molecules, the two best candidates, C1 (ZINC000299817826) and C3 (ZINC000095786149), were selected from the top-scoring compounds and further validated in Molecular Dynamic (MD) simulation. The Glide scores of C1 and C3 were -19.33 kcal/mol and -19.13 kcal/mol, suggesting that these compounds bind with LDM with higher binding affinity than the benchmark compound (itraconazole), which has a Glide score of -6.85 kcal/mol. Docking poses reveal that the compounds C1 and C3 bind to the outermost region of the LDM binding site, which can prevent the lanosterol from getting into the catalytic pocket. Furthermore, MD simulation studies were performed to assess the stability of C1 and C3 in complex with LDM and were found to be stable over the 100 nanosecond simulation time. Binding free energy calculated by the MMPBSA method suggested that the C3 forms a more stable complex with the LDM as close to the benchmark compounds. Among the top selected molecules, C1 and C3 were predicted to be the significant inhibitors of LDM.Communicated by Ramaswamy H. Sarma.
羊毛甾醇14-α脱甲基酶(LDM)是唑类抗真菌药物有前景的靶点之一。在本研究中,我们从不同化学数据库(ZINC、DrugBank、ChEMBL和ChemDiv)中筛选了大量小分子,以找出LDM的新型潜在抑制剂。结果,从超过十万个分子中,从得分最高的化合物中选出了两个最佳候选物C1(ZINC000299817826)和C3(ZINC000095786149),并在分子动力学(MD)模拟中进一步验证。C1和C3的Glide分数分别为-19.33 kcal/mol和-19.13 kcal/mol,这表明这些化合物与LDM的结合亲和力高于对照化合物(伊曲康唑),其Glide分数为-6.85 kcal/mol。对接姿势显示,化合物C1和C3与LDM结合位点的最外层区域结合,这可以阻止羊毛甾醇进入催化口袋。此外,进行了MD模拟研究以评估C1和C3与LDM复合物的稳定性,发现在100纳秒的模拟时间内是稳定的。通过MMPBSA方法计算的结合自由能表明,C3与LDM形成的复合物与对照化合物一样稳定。在所选的顶级分子中,C1和C3被预测为LDM的有效抑制剂。由Ramaswamy H. Sarma传达。