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Biological activity of antibacterial peptides matches synergism between electrostatic and non electrostatic forces

机译:抗菌肽的生物活性与静电力和非静电力之间的协同作用相匹配

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Substitution of Ala 108 and Ala 111 in the 107-115 human lysozyme (hLz) fragment results in a 20- fold increased anti-staphylococcal activity while its hemolytic activity becomes significant (30%) at very high concentrations. This analog displays an additional positive charge near the N-terminus (108) and an extra Trp residue at the center of the molecule (111), indicating that this particular amino acid sequence improves its interaction with the bacterial plasma membrane. In order to understand the role of this arrangement in the membrane interaction, studies with model lipid membranes were carried out. The interactions of peptides, 107-115 hLz and the novel analog ([K~(108)W~(111) ]107-115 hLz) with lipo- somes and lipid monolayers were evaluated by monitoring the changes in the fluorescence of the Trp residues and the variation of the monolayers surface pressure, respectively. Results obtained with both techniques revealed a significant affinity increase of [K~(108)W~(111) ] 107-115 hLz for lipids, especially when the membranes containing negatively charged lipids, such as phosphatidylglycerol. However, there is also a significant interaction with zwitterionic lipids, suggesting that other forces in addition to electrostatic interactions are involved in the binding. The analysis of adsorption isotherms and the insertion kinetics suggest that relaxation processes of the membrane structure are involved in the insertion process of novel peptide [K~(108)W~(111) ]107-115 hLz but not in 107-115 hLz, probably by imposing a reorganization of water at the interphases. In this regard, the enhanced activity of peptide [K~(108)W~(111) ]107-115 hLz may be explained by a syner- gistic effect between the increased electrostatic forces as well as the increased hydrophobic interactions.
机译:107-115人溶菌酶(hLz)片段中Ala 108和Ala 111的取代导致抗葡萄球菌活性增加20倍,而其溶血活性在非常高的浓度下变得很明显(30%)。该类似物在N端(108)附近显示一个额外的正电荷,在分子(111)中心显示一个额外的Trp残基,表明该特定氨基酸序列改善了它与细菌质膜的相互作用。为了了解这种安排在膜相互作用中的作用,对模型脂质膜进行了研究。通过监测Trp荧光的变化来评估肽107-115 hLz和新型类似物[[K〜(108)W〜(111)] 107-115 hLz)与脂质体和脂质单层的相互作用。残留物和单层表面压力的变化。两种技术的结果均显示[K〜(108)W〜(111)] 107-115 hLz对脂质的亲和力显着提高,尤其是当膜中含有带负电荷的脂质(如磷脂酰甘油)时。但是,与两性离子脂质也存在显着的相互作用,这表明除静电相互作用外,其他作用力也参与了结合。对吸附等温线和插入动力学的分析表明,膜结构的松弛过程参与了新型肽[K〜(108)W〜(111)] 107-115 hLz的插入过程,但不涉及107-115 hLz的插入过程,可能是在相间进行水重组。在这方面,肽[K〜(108)W〜(111)] 107-115 hLz的增强活性可以通过静电力增加和疏水相互作用增加的协同作用来解释。

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