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Evaluation of potential molecular interaction between quorum sensing receptor LuxP and grouper fatty acids: in-silico screening and simulation

机译:评价群体感应受体LuxP和石斑鱼脂肪酸之间的潜在分子相互作用:计算机内筛选和模拟

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摘要

Pathologically relevant behaviors of Vibrio, such as the expression of virulence factors, biofilm production, and swarming motility, have been shown to be controlled by quorum sensing. The autoinducer-2 quorum sensing receptor protein LuxP is one of the target proteins for drug development to suppress the virulence of Vibrio. Here, we reported the potential molecular interaction of fatty acids identified in vibriosis-resistant grouper with LuxP. Fatty acid, 4-oxodocosahexaenoic acid (4R8) showed significant binding affinity toward LuxP (−6.0 kcal/mol) based on molecular docking analysis. The dynamic behavior of the protein–ligand complex was illustrated by molecular dynamic simulations. The fluctuation of the protein backbone, the stability of ligand binding, and hydrogen bond interactions were assessed, suggesting 4R8 possesses potential interaction with LuxP, which was supported by the low binding free energy (−29.144 kJ/mol) calculated using the molecular mechanics Poisson–Boltzmann surface area.
机译:弧菌的病理相关行为,如毒力因子的表达,生物膜的产生和成群的运动,已被证明是由群体感应控制的。 autoinducer-2群体感应受体蛋白LuxP是药物开发中抑制弧菌毒力的目标蛋白之一。在这里,我们报道了在抗弧菌性石斑鱼中与LuxP鉴定的脂肪酸的潜在分子相互作用。根据分子对接分析,脂肪酸4-氧代二十二碳六烯酸(4R8)对LuxP(-6.0 kcal / mol)表现出显着的结合亲和力。蛋白质-配体复合物的动力学行为通过分子动力学模拟得到说明。评估了蛋白质主链的波动,配体结合的稳定性以及氢键相互作用,表明4R8与LuxP具有潜在的相互作用,这是由使用分子力学泊松算出的低结合自由能(-29.144 kJ / mol)支持的–玻尔兹曼表面积。

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