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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Physical Properties Affecting Cochleate Formation and Morphology Using Antimicrobial Oligo-acyl-lysyl Peptide Mimetics and Mixtures Mimicking the Composition of Bacterial Membranes in the Absence o Divalent Cations
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Physical Properties Affecting Cochleate Formation and Morphology Using Antimicrobial Oligo-acyl-lysyl Peptide Mimetics and Mixtures Mimicking the Composition of Bacterial Membranes in the Absence o Divalent Cations

机译:使用抗菌寡糖-酰基-赖氨酰肽模拟物和模拟细菌膜的混合物在不存在o二价阳离子的情况下影响耳蜗形成和形态的物理特性

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摘要

Several cationic antimicrobial oligo-acyl-lysyl (OAK) peptide mimetics can form cochleate structures, that is, elongated multilayered cylindrical structures, with lipid mixtures mimicking the composition of bacterial cytoplasmic membranes. These cochleate structures do not require divalent cations for their assembly. In the present work, we use light microscopy to screen for cochleate formation in several OAK—lipid systems and freeze-fracture electron microscopy to assess their morphological features and size. We identify several factors that facilitate a structural change in these assemblies. Dehydration of the membrane interface and a high melting temperature are features of the lipids that enhance cochleate formation in OAK-based lipid systems. In addition, we observed that there is a specific length of the hydrocarbon linker in the OAK of 8—9 carbon atoms that provides optimal formation of these structures. The biophysical properties established in this study will allow for a better understanding of their role and suitability for biological studies.
机译:几种阳离子抗微生物寡酰基-赖氨酰(OAK)肽模拟物可形成耳蜗结构,即细长的多层圆柱结构,其脂质混合物可模拟细菌细胞质膜的组成。这些耳蜗结构不需要二价阳离子进行组装。在目前的工作中,我们使用光学显微镜来筛选几种OAK-脂质系统中的耳蜗形成,并使用冷冻断裂电子显微镜来评估其形态特征和大小。我们确定了促进这些装配中结构变化的几个因素。膜界面的脱水和高熔化温度是增强基于OAK的脂质系统中耳蜗形成的脂质的特征。另外,我们观察到在8-9个碳原子的OAK中有一个特定长度的烃连接基,可以最佳地形成这些结构。在这项研究中建立的生物物理特性将有助于更好地了解它们的作用以及对生物学研究的适用性。

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