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Quorum sensing inhibitory potential and molecular docking studies of sesquiterpene lactones from Vernonia blumeoides

机译:产自Vernonia blumeoides的倍半萜内酯的群体感应抑制潜能和分子对接研究

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The increasing incidence of multidrug-resistant Gram-negative bacterial pathogens has focused research on the suppression of bacterial virulence via quorum sensing inhibition strategies, rather than the conventional antimicrobial approach. The anti-virulence potential of eudesmanolide sesquiterpene lactones previously isolated from Vernonia blumeoides was assessed by inhibition of quorum sensing and in silico molecular docking. Inhibition of quorum sensing-controlled violacein production in Chromobacterium violaceum was quantified using violacein inhibition assays. Qualitative modulation of quorum sensing activity and signal synthesis was investigated using agar diffusion double ring assays and C. violaceum and Agrobacterium tumefaciens biosensor systems. Inhibition of violacein production was concentration-dependent, with >= 90% inhibition being obtained with >= 2.4 mg ml(-1) of crude extracts. Violacein inhibition was significant for the ethyl acetate extract with decreasing inhibition being observed with dichloromethane, hexane and methanol extracts. Violacein inhibition >= 80% was obtained with 0.071 mg ml(-1) of blumeoidolide B in comparison with >= 3.6 mg ml(-1) of blumeoidolide A. Agar diffusion double ring assays indicated that only the activity of the Luxl synthase homologue, Cvil, was modulated by blumeoidolides A and B, and V. blumeoides crude extracts, suggesting that quorum sensing signal synthesis was down-regulated or competitively inhibited. Finally, molecular docking was conducted to explore the binding conformations of sesquiterpene lactones into the binding sites of quorum sensing regulator proteins, CviR and CviR'. The computed binding energy data suggested that the blumeoidolides have a tendency to inhibit both CviR and CviR' with varying binding affinities. Vernonia eudesmanolide sesquiterpene lactones have the potential to be novel therapeutic agents, which might be important in reducing virulence and pathogenicity of drug-resistant bacteria in vivo. (C) 2016 Elsevier Ltd. All rights reserved.
机译:多重耐药性革兰氏阴性细菌病原体的发病率上升,已将研究重点集中在通过群体感应抑制策略而非常规的抗菌方法来抑制细菌的毒力。通过抑制群体感应和计算机分子对接,评估了先前从褐藻中分离出的马齿man倍半萜内酯的抗毒力。使用紫丁香素抑制测定法定量分析了紫质色杆菌中群体感应控制的紫丁香素产生的抑制作用。使用琼脂扩散双环分析以及紫胶衣杆菌和根癌农杆菌生物传感器系统研究了群体感应活性和信号合成的定性调节。紫胶素产生的抑制作用是浓度依赖性的,> = 2.4 mg ml(-1)的粗提物可获得> = 90%的抑制作用。紫丁香素对乙酸乙酯提取物的抑制作用很显着,而二氯甲烷,己烷和甲醇提取物的抑制作用则有所降低。相比> = 3.6 mg ml(-1)的溴化内酯A,用0.071 mg ml(-1)的溴化内酯B可获得的紫堇素抑制> = 80%。琼脂扩散双环分析表明,只有Luxl合酶同系物的活性,由Blumeoidolides A和B,和V. blumeoides粗提取物调制,表明群体感应信号合成被下调或竞争性抑制。最后,进行分子对接以探索倍半萜内酯在群体感应调节蛋白CviR和CviR'的结合位点中的结合构象。计算出的结合能数据表明,类美ume素具有以不同的结合亲和力抑制CviR和CviR'的趋势。普通杜鹃花倍半萜内酯具有成为新型治疗剂的潜力,这对降低体内耐药细菌的毒力和致病性可能很重要。 (C)2016 Elsevier Ltd.保留所有权利。

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