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Membrane Interactions of Natural Cyclic Lipodepsipeptides of the Viscosin Group

机译:粘菌素基团的天然环状脂溢性肽的膜相互作用

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Many Pseudomonas spp. produce cyclic lipodepsipeptides (CLPs), which, besides their role in biological functions such as motility, biofilm formation and interspecies interactions, are antimicrobial. It has been established that interaction with the cellular membrane is central to the mode of action of CLPs. In this work, we focus on the CLPs of the so-called viscosin group, aiming to assess the impact of the main structural variations observed within this group on both the antimicrobial activity and the interaction with model membranes. The antimicrobial activity of viscosin, viscosinamide A, WLIP and pseudodesmin A were all tested on a broad panel of mainly Gram-positive bacteria. Their capacity to permeabilize or fuse PG/PE/cardiolipin model membrane vesicles is assessed using fluorescent probes. We find that the Glu2/Gln2 structural variation within the viscosin group is the main factor that influences both the membrane permeabilization properties and the minimum inhibitory concentration of bacterial growth, while the configuration of the Leu5 residue has no apparent effect. The CLP-membrane interactions were further evaluated using CD and FT-IR spectroscopy on model membranes consisting of PG/PE/cardiolipin or POPC with or without cholesterol. In contrast to previous studies, we observe no conformational change upon membrane insertion. The CLPs interact both with the polar heads and aliphatic tails of model membrane systems, altering bilayer fluidity, while cholesterol reduces CLP insertion depth. (C) 2016 Elsevier B.V. All rights reserved.
机译:许多假单胞菌。产生环状lipodepsipeptides(的CLPs),其中,除了它们在生物功能,如运动性,生物膜形成和种间相互作用的作用,是抗微生物的。已经确定的是与细胞膜相互作用是中央的CLP的作用方式。在这项工作中,我们侧重于所谓viscosin组的CLPs,旨在评估抗微生物活性,并与膜模型的相互作用二者在此组内所观察到的主要的结构变化的影响。 viscosin的抗微生物活性,viscosinamide A,WLIP和pseudodesmin A中所有主要的革兰氏阳性菌的广泛面板上进行试验。它们的容量以透或保险丝PG / PE /心磷脂模型膜囊泡是使用荧光探针评估。我们发现,viscosin组内的Glu2 / Gln2结构变化是同时影响的膜透性和细菌生长的最低抑制浓度,而Leu5残基的构型具有没有明显的影响的主要因素。使用CD和FT-IR光谱在由PG / PE /心磷脂或POPC的具有或不具有胆固醇膜模型的CLP-膜相互作用中进一步评估。相较于以前的研究中,我们观察到在膜插入无构象变化。所述的CLPs相互作用二者与极性头和模型膜系统的脂族尾,改变双层的流动性,而降低胆固醇CLP插入深度。 (c)2016年Elsevier B.v.保留所有权利。

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