首页> 外文期刊>Journal of Molecular Structure >Structural activity (monomer and dimer), spectroscopic analysis, chemical reactivity, fungicidal activity and molecular dynamics simulation of phenyl benzamide fungicides: A combined experimental and theoretical approach
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Structural activity (monomer and dimer), spectroscopic analysis, chemical reactivity, fungicidal activity and molecular dynamics simulation of phenyl benzamide fungicides: A combined experimental and theoretical approach

机译:结构活性(单体和二聚体),光谱分析,化学反应性,杀苯基苯胺杀菌剂的杀菌剂仿真:一种实验和理论方法

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摘要

The present study aims to provide deeper knowledge of the structural activity, spectroscopic analysis, chemical reactivity and fungicidal activity of phenyl benzamide fungicides: flutolanil and mepronil based on monomer and dimer model with the aid of experimental and computational methods. The distribution of the vibrational bands are carried out with the help of normal coordinate analysis (NCA). The resulting harmonic wavenumbers are scaled by using Wavenumber Linear Scaling method (WLS). The nature of the hydrogen bonds are characterized by NBO analysis. The evaluated HOMO and LUMO energies indicate the chemical stability of the molecules. The time dependent density functional theory is used to find the various electronic transitions and their nature within the molecule. The molecular orbital contributions are studied by using TDOS spectral analysis. The molecular electrostatic potential (MESP) and global reactivity descriptor parameters are also performed. The H-1 and C-13 NMR spectra are recorded. The stable conformers of flutolanil and mepronil have been identified by potential energy surface scan analysis. The binding affinity and hydrogen bond interaction between the selected compounds and the target protein are evaluated using molecular docking studies. The pose with highest interaction energy and hydrogen bond interaction is further analyzed using molecular dynamics studies to understand the effect of ligands on conformational changes of protein and the stability of protein ligand complex. The invitro analysis has been performed against two fungal pathogens, Aspergillus niger and Candida albicans. (C) 2019 Elsevier B.V. All rights reserved.
机译:本研究旨在提供对苯基苯甲酰胺杀菌剂的结构活性,光谱分析,化学反应性和杀真菌活性的更深入了解:借助于实验和计算方法,基于单体和二聚体模型的氟胺和Mepronil。振动带的分布是在正常坐标分析(NCA)的帮助下进行的。通过使用波数线性缩放方法(WLS)来缩放所得到的谐波。氢键的性质的特征在于NBO分析。评估的同性恋能量表示分子的化学稳定性。时间依赖性密度泛函理论用于找到分子内各种电子转换及其性质。通过使用TDOS光谱分析研究了分子轨道贡献。还执行分子静电电位(MES)和全局反应性描述符参数。记录H-1和C-13 NMR光谱。通过潜在的能量表面扫描分析识别了氟胺胺和Mepronil的稳定塑造剂。使用分子对接研究评估所选化合物和靶蛋白之间的结合亲和力和氢键相互作用。使用分子动力学研究进一步分析了具有最高相互作用能量和氢键相互作用的姿势,以了解配体对蛋白质构象变化的影响和蛋白质配体络合物的稳定性。 invitro分析已针对两种真菌病原体,曲霉虫和念珠菌患者进行。 (c)2019 Elsevier B.v.保留所有权利。

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