Reddy Mangari Madhusudhan, J Abhithaj, Reddy Eeda Koti, Anwar Shaik, C Sadasivan
Department of Chemistry, School of Applied Science and Humanities, Vignan's Foundation for Science, Technology and Research University, Vadlamudi, Guntur 522 213, Andhra Pradesh, India.
Centre for Integrative Omics Data Science (CIODS), Yenepoya (Deemed to be University), Mangalore, Karnataka, India - 575018.
Org Biomol Chem. 2025 Jul 16;23(28):6773-6784. doi: 10.1039/d5ob00785b.
Different cyclic ketones were used as substrates to synthesize tacrine derivatives to investigate their drug-like properties to identify a lead molecule for treating Alzheimer's disease (AD). The studies revealed that compound 3c, a tacrine-2-carboxylic ester, binds to the catalytically active site (CAS) of AChE with a glide score of -11.49 kcal mol and binding energy of -75.04 kcal mol. In comparison, tacrine showed a glide score of -10.59 kcal mol with a binding energy of -54.05 kcal mol. The interaction of tacrine and its derivative at the active site of AChE involves a hydrogen bond between Tyr124 and Ser125, as well as π-π stacking and cationic interactions with Trp86. Both tacrine and compound 3c exhibit similar interactions, and protein-ligand binding heavily relies on π-π stacking interactions, which serve as an indicator of the binding enthalpy. Most of the synthesized tacrine derivatives showed a good potency of less than 100 nM. Among the 16 analogues, compounds 3c, 3f, and 3m were found to exhibit good potency of 46.8 nM, 45.9 nM and 13.6 nM, respectively, towards the inhibition of acetylcholinesterase. Molecular dynamics simulation confirmed the significant binding of compound 3c with an average RMSD value of 1.36 ± 0.14 Å. Therefore, compound 3c can be considered as a promising hit or lead derivative as a cholinesterase inhibitor for the treatment of Alzheimer's disease.
使用不同的环状酮作为底物来合成他克林衍生物,以研究它们的类药物性质,从而确定一种用于治疗阿尔茨海默病(AD)的先导分子。研究表明,化合物3c(一种他克林-2-羧酸酯)与乙酰胆碱酯酶(AChE)的催化活性位点(CAS)结合,其Glide评分 为-11.49 kcal/mol,结合能为-75.04 kcal/mol。相比之下,他克林的Glide评分为-10.59 kcal/mol,结合能为-54.05 kcal/mol。他克林及其衍生物在AChE活性位点的相互作用涉及Tyr124和Ser125之间的氢键,以及与Trp86的π-π堆积和阳离子相互作用。他克林和化合物3c都表现出相似的相互作用,蛋白质-配体结合严重依赖于π-π堆积相互作用,这是结合焓的一个指标。大多数合成的他克林衍生物显示出小于100 nM的良好效力。在这16种类似物中,发现化合物3c、3f和3m对乙酰胆碱酯酶的抑制效力分别为46.8 nM、45.9 nM和13.6 nM。分子动力学模拟证实了化合物3c的显著结合,平均RMSD值为1.36±0.