Wuxi Food Safety Inspection and Test Center, 35-210 South Changjiang Road, Wuxi 214142, China.
Technology Innovation Center of Special Food for State Market Regulation, 35-302 South Changjiang Road, Wuxi 214142, China.
Molecules. 2023 Aug 7;28(15):5933. doi: 10.3390/molecules28155933.
Human hematopoietic prostaglandin D2 synthase (HPGDS) is involved in the production of prostaglandin D2, which participates in various physiological processes, including inflammation, allergic reactions, and sleep regulation. Inhibitors of HPGDS have been investigated as potential anti-inflammatory agents. For the investigation of potent HPGDS inhibitors, we carried out a computational modeling study combining molecular docking and molecular dynamics simulation for selecting and virtual confirming the designed binders. We selected the structure of HPGDS (PDB ID: 2CVD) carrying its native inhibitor compound HQL as our research target. The random 5-mer peptide library was created by building the 3-D structure of random peptides using Rosetta Buildpeptide and performing conformational optimization. Molecular docking was carried out by accommodating the peptides into the location of their native binder and then conducting docking using FlexPepDock. The two peptides RMYYY and VMYMI, which display the lowest binding energy against HPGDS, were selected to perform a comparative study. The interaction of RMYYY and VMYMI against HPGDS was further confirmed using molecular dynamics simulation and aligned with its native binder, HQL. We show the selected binders to have stronger binding energy and more frequent interactions against HPGDS than HQL. In addition, we analyzed the solubility, hydrophobicity, charge, and bioactivity of the generated peptides, and we show that the selected strong binder may be further used as therapeutic drugs.
人类造血前列腺素 D2 合酶(HPGDS)参与前列腺素 D2 的产生,前列腺素 D2 参与各种生理过程,包括炎症、过敏反应和睡眠调节。HPGDS 的抑制剂已被研究作为潜在的抗炎药物。为了研究有效的 HPGDS 抑制剂,我们进行了一项结合分子对接和分子动力学模拟的计算建模研究,以选择和虚拟确认设计的结合物。我们选择携带其天然抑制剂化合物 HQL 的 HPGDS(PDB ID:2CVD)结构作为我们的研究目标。使用 Rosetta Buildpeptide 构建随机肽的 3D 结构,并进行构象优化,创建随机 5 肽文库。通过将肽容纳到其天然结合物的位置,然后使用 FlexPepDock 进行对接,进行分子对接。选择结合能最低的两个肽 RMYYY 和 VMYMI 进行比较研究。使用分子动力学模拟进一步确认 RMYYY 和 VMYMI 与 HPGDS 的相互作用,并与天然结合物 HQL 对齐。我们表明,所选结合物与 HPGDS 的结合能更强,相互作用更频繁,优于 HQL。此外,我们分析了生成肽的溶解度、疏水性、电荷和生物活性,并表明所选的强结合物可能进一步用作治疗药物。