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采用计算机模拟方法研究具有潜在抗菌和除草特性的新型喹啉酮-查尔酮杂合体。

A new quinolinone-chalcone hybrid with potential antibacterial and herbicidal properties using in silico approaches.

机构信息

Research and Energy Efficiency Center, CAOA, Vehicle Assembler LTDA, Anápolis, GO, Brazil.

Campus of Exact and Technological Sciences, State University of Goiás, Anápolis, GO, Brazil.

出版信息

J Mol Model. 2022 Jun 2;28(6):176. doi: 10.1007/s00894-022-05140-9.

Abstract

Quinolinone-chalcones are hybrid compounds consisting of chalcone and quinolone moieties with biological activity related to their hybrid structure. This work seeks to describe the structural and theoretical parameters related to the physicochemical properties and biological activity of a new quinolinone-chalcone. The synthesis, structural characterization by X-ray diffraction, molecular topology by Hirshfeld surfaces and QTAIM, molecular electronic calculations, and pharmacophore analysis were described. The weak interactions C-HO, C-Hπ, and C-HBr were responsible for crystal growth and stabilized the crystalline state. The DFT analysis shows that the sulfonamide group region is susceptible to observed interactions, and the frontier molecular orbitals indicate high kinetic stability. Also, pharmacophore analysis revealed potential antibacterial and herbicidal activity; by docking within the active site of TtgR, a transcription regulator for the efflux pump TtgABC from the highly resistant Pseudomonas putida (P. putida) strain DOT-TIE, we showed that the activation of TtgR relies upon the binding of aromatic-harboring compounds, which plays a crucial role in bacterial evasion. In this context, a new quinolinone-chalcone has a higher binding affinity than tetracycline, which suggests it might be a better effector for TtgR.

摘要

喹啉酮查耳酮是由查尔酮和喹啉部分组成的混合化合物,具有与其混合结构相关的生物活性。这项工作旨在描述与一种新的喹啉酮查耳酮的物理化学性质和生物活性相关的结构和理论参数。描述了其合成、X 射线衍射结构表征、Hirshfeld 表面和 QTAIM 的分子拓扑、分子电子计算和药效团分析。弱相互作用 C-HO、C-Hπ 和 C-HBr 负责晶体生长并稳定晶体状态。DFT 分析表明,磺酰胺基团区域易受观察到的相互作用影响,前沿分子轨道表明具有较高的动力学稳定性。此外,药效团分析显示出潜在的抗菌和除草活性;通过在高度耐药的铜绿假单胞菌(P. putida)菌株 DOT-TIE 的外排泵 TtgABC 的转录调节剂 TtgR 的活性部位进行对接,我们表明 TtgR 的激活依赖于芳香族化合物的结合,这在细菌逃避中起着关键作用。在这种情况下,新的喹啉酮查耳酮比四环素具有更高的结合亲和力,这表明它可能是 TtgR 的更好效应物。

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