Talab Faiz, Alam Aftab, Ullah Saeed, Elhenawy Ahmed A, Shah Syed Adnan Ali, Ali Mumtaz, Halim Sobia Ahsan, Khan Ajmal, Latif Abdul, Al-Harrasi Ahmed, Ahmad Manzoor
Department of Chemistry, University of Malakand, Khyber Pakhtunkhwa, Pakistan.
College of Chemistry and Materials Science, Hebei Normal University, Shijiazhuang, China.
J Biomol Struct Dyn. 2024 Feb 22:1-15. doi: 10.1080/07391102.2024.2319677.
This research work reports the synthesis of new derivatives of the hydrazone Schiff bases () based on polyhydroquinoline nucleus through multistep reactions. HR-ESIMS,H- and C-NMR spectroscopy were used to structurally infer all of the synthesized compounds and lastly evaluated for prolyl oligopeptidase inhibitory activity. All the prepared products displayed good to excellent inhibitory activity when compared with standard z-prolyl-prolinal. Three derivatives , and showed excellent inhibition with IC values 3.21 ± 0.15 to 5.67 ± 0.18 µM, while the remaining 12 compounds showed significant activity. Docking studies indicated a good correlation with the biochemical potency of compounds estimated in the test and showed the potency of compounds and . The MD simulation results confirmed the stability of the most potent inhibitors and at 250 ns using the parameters RMSD, RMSF, Rg and number of hydrogen bonds. The RMSD values indicate the stability of the protein backbone in complex with the inhibitors over the simulation time. The RMSF values of the binding site residues indicate that the potent inhibitors contributed to stabilizing these regions of the protein, through formed stable interactions with the protein. The Rg. analysis assesses the overall size and compactness of the complexes. The maintenance of stable hydrogen bonds suggests the existence of favorable binding interactions. SASA analysis suggests that they maintained stable conformations without large-scale exposure to the solvent. These results indicate that the ligand-protein interactions are stable and could be exploited to design new drugs for disease treatment.
本研究工作报道了基于多氢喹啉核通过多步反应合成新型腙席夫碱衍生物()。采用高分辨电喷雾电离质谱(HR - ESIMS)、氢核磁共振(H - NMR)和碳核磁共振(C - NMR)光谱对所有合成化合物进行结构推断,最后评估其对脯氨酰寡肽酶的抑制活性。与标准的Z - 脯氨酰 - 脯氨醛相比,所有制备的产物均表现出良好至优异的抑制活性。三种衍生物、和表现出优异的抑制作用,IC值为3.21±0.15至5.67±0.18μM,而其余12种化合物表现出显著活性。对接研究表明与在试验中估计的化合物生化活性具有良好的相关性,并显示了化合物和的活性。分子动力学(MD)模拟结果使用均方根偏差(RMSD)、均方根波动(RMSF)、回旋半径(Rg)和氢键数量等参数,证实了最有效抑制剂和在250纳秒时的稳定性。RMSD值表明在模拟时间内蛋白质主链与抑制剂复合物的稳定性。结合位点残基的RMSF值表明,有效抑制剂通过与蛋白质形成稳定相互作用,有助于稳定蛋白质的这些区域。Rg分析评估了复合物的整体大小和紧凑性。稳定氢键的维持表明存在有利的结合相互作用。溶剂可及表面积(SASA)分析表明它们保持稳定构象,没有大规模暴露于溶剂中。这些结果表明配体 - 蛋白质相互作用是稳定的,可用于设计治疗疾病的新药。