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Lipid binding and membrane penetration of polymyxin B derivatives studied in a biomimetic vesicle system.

机译:在仿生囊泡系统中研究了多粘菌素B衍生物的脂质结合和膜渗透。

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摘要

Understanding membrane interactions and cell-wall permeation of Gram-negative bacteria is of great importance, owing to increasing bacterial resistance to existing drugs and therapeutic treatments. Here we use biomimetic lipid vesicles to analyse membrane association and penetration by synthetic derivatives of polymyxin B (PMB), a potent naturally occurring antibacterial cyclic peptide. The PMB analogues studied were PMB nonapeptide (PMBN), in which the hydrophobic alkyl residue was cleaved, PMBN diastereomer containing D-instead of L-amino acids within the cyclic ring (dPMBN) and PMBN where the hydrophobic alkyl chain was replaced with an Ala6 repeat (Ala6-PMBN). Peptide binding measurements, colorimetric transitions induced within the vesicles, fluorescence quenching experiments and ESR spectroscopy were applied to investigate the structural parameters underlying the different membrane-permeation profiles and biological activities of the analogues. The experiments point to the role of negatively charged lipids in membrane binding and confirm the prominence of lipopolisaccharide (LPS) in promoting membrane association and penetration by the peptides. Examination of the lipid interactions of the PMB derivatives shows that the cyclic moiety of PMB is not only implicated in lipid attachment and LPS binding, but also affects penetration into the inner bilayer core. The addition of the Ala6 peptide moiety, however, does not significantly promote peptide insertion into the hydrophobic lipid environment. The data also indicate that the extent of penetration into the lipid bilayer is not related to the overall affinity of the peptides to the membrane.
机译:由于细菌对现有药物和治疗方法的耐药性不断提高,因此了解革兰氏阴性细菌的膜相互作用和细胞壁渗透非常重要。在这里,我们使用仿生脂质囊泡来分析膜结合和多粘菌素B(PMB)(一种有效的天然存在的抗菌环肽)的合成衍生物的渗透性。所研究的PMB类似物为PMB九肽(PMBN),其中疏水性烷基残基被裂解,在环中包含D-而非L-氨基酸的PMBN非对映异构体(dPMBN),以及其中疏水性烷基链被Ala6取代的PMBN重复(Ala6-PMBN)。肽结合测量,囊泡内诱导的比色转换,荧光猝灭实验和ESR光谱用于研究不同膜渗透概况和类似物的生物学活性的结构参数。实验指出带负电荷的脂质在膜结合中的作用,并证实了脂寡糖(LPS)在促进膜缔合和肽穿透方面的突出地位。对PMB衍生物的脂质相互作用的检查表明,PMB的环状部分不仅与脂质附着和LPS结合有关,而且还影响到内部双层核心的渗透。但是,Ala6肽部分的添加不会显着促进肽插入疏水脂质环境中。数据还表明渗入脂质双层的程度与肽对膜的总体亲和力无关。

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