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7-三氟甲基-1H-吲哚-2-羧酸作为芳香酶抑制剂的光谱、电子结构、分子对接和分子动力学模拟研究。

Spectroscopic, electronic structure, molecular docking, and molecular dynamics simulation study of 7-Trifluoromethyl-1H-indole-2-carboxylic acid as an aromatase inhibitor.

机构信息

Department of Physics, University of Lucknow, 226007 Lucknow, India.

Department of Physics, Maharishi University of Information Technology Lucknow, Uttar Pradesh, India.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2022 Nov 5;280:121530. doi: 10.1016/j.saa.2022.121530. Epub 2022 Jun 20.

Abstract

The present work encompasses a combined experimental and theoretical investigation of the molecular structure, vibrational wavenumbers, electronic structure at the ground and electronic excited states, molecular electrostatic potential surface of 7-(Trifluoromethyl)-1H-indole-2-carboxylic acid (TICA) and possibility of the title molecule as an aromatase inhibitor using molecular docking and molecular dynamic simulations. A stable conformer has been obtained using potential energy scans by varying appropriate dihedral angles. The obtained minimum energy conformer was further optimized at the 6-311++G (d, p) basis set by applying the most accepted B3LYP functional. A good agreement between experimental and calculated normal modes of vibration has been observed. The hydrogen-bonded interaction between two monomeric units of TICA has been investigated using NBO,QTAIM, and NCI (noncovalent interactions) analysis. Molecular docking of TICA with human placental aromatase (PDB ID: 3S79) reveals the formation of polar hydrogen bonds as well as hydrophobic interactions between the ligand and the protein, right in the binding cavity. TICA satisfies all pharmacokinetic filters (Lipinski rule of five, the Veber rule, Ghose rule, Egan rule, as well as the Muegge rule) and has a high bioavailability score of 0.85. Dynamic stability of the ligand within the binding pocket of the target protein has been confirmed by 100 ns molecular dynamics simulation results. The present study provides an excellent starting point for additional in vivo research, and TICA may eventually serve as a significant therapeutic candidate for the treatment of breast cancer.

摘要

本工作综合了实验和理论研究,研究了 7-(三氟甲基)-1H-吲哚-2-羧酸(TICA)的分子结构、振动波数、基态和电子激发态的电子结构、分子静电势表面,以及利用分子对接和分子动力学模拟研究了标题分子作为芳香酶抑制剂的可能性。通过改变适当的二面角,进行势能扫描得到了一个稳定的构象。在 6-311++G(d,p)基组上,应用最被接受的 B3LYP 函数进一步优化得到的最低能量构象。观察到实验和计算得到的振动模式之间有很好的一致性。利用 NBO、QTAIM 和 NCI(非共价相互作用)分析研究了 TICA 两个单体单元之间的氢键相互作用。TICA 与人胎盘芳香酶(PDB ID:3S79)的分子对接表明,在结合腔中,配体和蛋白质之间形成了极性氢键和疏水相互作用。TICA 满足所有药代动力学过滤器(Lipinski 五规则、Veber 规则、Ghose 规则、Egan 规则以及 Muegge 规则),且生物利用度评分为 0.85。通过 100ns 分子动力学模拟结果证实了配体在靶蛋白结合口袋内的动态稳定性。本研究为进一步的体内研究提供了一个极好的起点,TICA 最终可能成为治疗乳腺癌的重要治疗候选药物。

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