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A Solid-state NMR Study of the Kinetics of the Activity of an Antimicrobial Peptide, PG-1 on Lipid Membranes

机译:脂质体膜上抗菌肽PG-1活性动力学的固态NMR研究

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摘要

The activity of an antimicrobial peptide, protegrin-1 (PG-1), on lipid membranes was investigated using solid-state NMR and a new sampling method that employed mechanically aligned bilayers between thin glass plates. At 95% hydration and full hydration, the peptide respectively disrupted 25% and 86% of the aligned 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphotidylcholine (POPC) bilayers at a P/L (peptide-to-lipid) ratio of 1/20 under the new experimental conditions. The kinetics of the POPC bilayers disruption appeared to be diffusion-controlled. The presence of cholesterol at 95% hydration and full hydration reduced the peptide disruption of the aligned POPC bilayers to less than 10% and 35%, respectively. A comparison of the equilibrium states of heterogeneously and homogeneously mixed peptides and lipids demonstrated the importance of peptide binding to the biomembrane for whole membrane disruption.
机译:使用固态NMR和一种在薄玻璃板之间采用机械排列的双层结构的新采样方法,研究了抗菌肽protegrin-1(PG-1)在脂质膜上的活性。在95%的水合作用和完全水合作用下,该肽分别以P / L(肽对脂质)破坏25%和86%的对齐的1-棕榈酰基-2-油酰基-sn-甘油-3-磷脂酰胆碱(POPC)双层)在新的实验条件下为1/20。 POPC双层破坏的动力学似乎是受扩散控制的。 95%水合和完全水合时胆固醇的存在将对齐的POPC双层的肽破坏率分别降低至小于10%和35%。异质和均质混合的肽和脂质的平衡状态比较表明,肽与生物膜的结合对于破坏整个膜非常重要。

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