DFT Computations and Molecular Docking Studies of 3-(6-(3-aminophenyl)thiazolo[1,2,4]triazol-2-yl)-2H-chromen-2-one(ATTC) Molecule

Mehmet Bağlan, Kenan Gören, Ümit Yildiko
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Abstract

In this study, theoretic analyses were executed on the optimized geometric structure of 3-(6-(3-aminophenyl)thiazolo[3,2-b][1.2.4]triazol-2-yl)-2H-chromen-2-one (ATTC). The basis sets for these theoretical research were B3LYP/DGDZVP and B3LYP/6-311G(d,p). To determine the stability and molecular reactiveness of the molecule, energy range, the HOMO-LUMO energies, softhood (s), hardhood (η), electronic negativity (χ), and chemical potential (μ) characteristics were employed. The second array decay energy E(2) values of the molecule, which indicates the ATTC molecule’s the bioactivite, were determined with the native bond orbital (NBO) analysis. The ATTC molecule’s the reactive behavior is further studied using simulated the molecular electrostatic potential (MEP) surface’s calculations. The overall electron intensity and mulliken atomic charge distribution found by MEP area research gave proof that the molecule's reactive area existed. The ATTC molecule will continue to be a crucial therapeutic agent to Alzheimer disease’s the treatment Alzheimer disease thanks to molecular docking study. The highest binding affinity was observed as a docking score of -10,681 Kcal/mol.
3-(6-(3-氨基苯基)噻唑[1,2,4]三唑-2-基)- 2h - chromen2 -one(ATTC)分子的DFT计算及分子对接研究
本研究对3-(6-(3-氨基苯基)噻唑[3,2-b][1.2.4]三唑-2-基)- 2h - chromen2 -one (ATTC)的优化几何结构进行了理论分析。这些理论研究的基础集为B3LYP/DGDZVP和B3LYP/6-311G(d,p)。利用能谱、HOMO-LUMO能、软硬度(s)、硬度(η)、电子负性(χ)和化学势(μ)等特征来确定分子的稳定性和分子反应性。用天然键轨道(NBO)法测定了分子的第二阵列衰变能E(2)值,表征了ATTC分子的生物活性。通过模拟分子静电势(MEP)表面的计算,进一步研究了ATTC分子的反应行为。MEP区域研究得到的总电子强度和mulliken原子电荷分布证明了分子的反应区存在。随着分子对接研究的开展,ATTC分子将继续成为治疗阿尔茨海默病的重要药物。结合亲和性最高,对接评分为- 10681 Kcal/mol。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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