Biochemistry and Structural Biology Division, CSIR-Central Drug Research Institute, Sector 10, Jankipuram Extension, Sitapur Road, Lucknow, 226031, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.
J Mol Model. 2024 Oct 30;30(11):389. doi: 10.1007/s00894-024-06181-y.
Alpha-glucosidase enzyme is considered an important therapeutic target for controlling hyperglycemia associated with type 2 diabetes. Novel scaffolds identified as potential alpha-glucosidase inhibitors from the Maybridge library utilizing pharmacophore modeling, molecular docking and biological evaluation are reported in this manuscript.
A total of 51 xanthone series scaffolds previously reported as alpha-glucosidase inhibitors were collected and used as training and test sets. These sets were employed to develop and validate a pharmacophore-based 3D-QSAR model with statistically meaningful results using Schrodinger software. The model showed a high F value (F, 80.1) at five component partial least square factors, a high cross-validation coefficient (Q, 0.66) and a good correlation coefficient (R, 0.95). Pearson correlation coefficient (r) of 0.8400 indicated a greater degree of confidence in the model. Subsequently, virtual screening was performed with PHASE module of Schrodinger software using the above model to identify novel alpha-glucosidase inhibitors, and mapped compounds were evaluated for their interactions with the protein. The X-ray co-crystallised structure of the alpha-glucosidase protein in complex with acarbose (PDB Code: 5NN8) was used for molecular docking analysis using GLIDE module and a total of eight compounds were further selected for biological evaluation. Molecular dynamics analysis using GROMACS software was performed in the active site of alpha-glucosidase protein to gain insights into binding mechanism of the four active compounds which were finally found to exhibit inhibitory activity in the biological assay.
α-葡萄糖苷酶被认为是控制 2 型糖尿病相关高血糖的重要治疗靶点。本文报道了利用药效团模型、分子对接和生物评价从 Maybridge 库中鉴定出的新型作为潜在α-葡萄糖苷酶抑制剂的黄烷酮骨架。
共收集了 51 个先前报道为α-葡萄糖苷酶抑制剂的黄烷酮系列骨架,用作训练集和测试集。使用 Schrödinger 软件,采用具有统计学意义的方法,利用这些集合开发和验证基于药效团的 3D-QSAR 模型。该模型在五个成分偏最小二乘因子中表现出高 F 值(F,80.1),交叉验证系数(Q,0.66)高,相关系数(R,0.95)好。Pearson 相关系数(r)为 0.8400 表明模型具有更高的可信度。随后,使用 Schrödinger 软件的 PHASE 模块,根据上述模型进行虚拟筛选,以鉴定新型α-葡萄糖苷酶抑制剂,并对映射化合物与蛋白质的相互作用进行评估。使用 X 射线共结晶的α-葡萄糖苷酶蛋白与阿卡波糖复合物的结构(PDB 代码:5NN8),使用 GLIDE 模块进行分子对接分析,共选择了 8 种化合物进行生物学评价。使用 GROMACS 软件在α-葡萄糖苷酶蛋白的活性部位进行分子动力学分析,以深入了解四个活性化合物的结合机制,最终发现它们在生物学测定中具有抑制活性。