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Oxidized phospholipids as potential molecular targets for antimicrobial peptides.

机译:氧化的磷脂作为抗菌肽的潜在分子靶标。

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The effects of oxidatively modified phospholipids on the association with model biomembranes of four antimicrobial peptides (AMPs), temporin B and L, indolicidin, and LL-37(F27W) were studied by Langmuir balance and fluorescence spectroscopy. In keeping with previous reports the negatively charged phospholipid phosphatidylglycerol (PG) enhanced the intercalation of all four peptides into lipid monolayers and liposomal bilayers under low ionic strength conditions. Interestingly, similar effect was observed for 1-palmitoyl-2-(9'-oxo-nonanoyl)-sn-glycero-3-phosphocholine (PoxnoPC), a zwitterionic oxidized phospholipid bearing an aldehyde function at the end of its truncated sn-2 acyl chain. Instead, the structurally similar 1-palmitoyl-2-azelaoyl-sn-glycero-3-phosphocholine (PazePC) containing a carboxylic moiety was less efficient in promoting the membrane association of these peptides. Physiological saline reduced the binding of the above peptides to membranes containing PG, whereas interactions with PoxnoPC were found to be insensitive to ionic strength. Notably, membrane intercalation of temporin L, the most surface active of the above peptides could be into PoxnoPC containing monolayers was strongly attenuated by methoxyamine, suggesting the importance of Schiff base formation between peptide amino groups and the lipid aldehyde function. PoxnoPC and similar aldehyde bearing oxidatively modified phospholipids could represent novel molecular targets for AMPs.
机译:通过朗缪尔天平和荧光光谱研究了氧化修饰的磷脂对四种抗菌肽(AMPs),temporin B和L,吲哚美定和LL-37(F27W)与模型生物膜的结合的影响。与以前的报告保持一致,带负电的磷脂磷脂酰甘油(PG)在低离子强度条件下增强了所有四个肽向脂质单层和脂质体双层的嵌入。有趣的是,对于1-棕榈酰基-2-(9'-氧代壬酸)-sn-甘油-3-磷酸胆碱(PoxnoPC)观察到了类似的效果,这是一种两性离子氧化磷脂,在其截短的sn-2末端具有醛功能。酰基链。相反,含有羧基部分的结构相似的1-棕榈酰基-2-氮杂环烷基-sn-甘油-3-磷酸胆碱(PazePC)在促进这些肽的膜缔合方面效率较低。生理盐水减少了上述肽与含有PG的膜的结合,而与PoxnoPC的相互作用被发现对离子强度不敏感。值得注意的是,temporin L的膜嵌入,上述肽的最大表面活性可能被含PoxnoPC的单分子膜通过甲氧基胺强烈减弱,这表明在肽氨基和脂醛功能之间形成席夫碱的重要性。 PoxnoPC和类似的含醛的氧化修饰磷脂可能代表AMPs的新型分子靶标。

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