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Peptide hydrophobicity controls the activity and selectivity of magainin 2 amide in interaction with membranes.

机译:肽的疏水性控制与膜相互作用的magainin 2酰胺的活性和选择性。

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The magainins are antibacterial peptides from the skin of Xenopus laevis. They show a broad range of activity against prokaryotic cells but lyse eukaryotic cells poorly. To elucidate the influence of peptide hydrophobicity on membrane activity and selectivity, we designed and synthesized analogs of magainin 2 amide with slightly varying hydrophobicities but retained hydrophobic moment, peptide charge, and angle subtended by the hydrophilic helix region. Circular dichroism investigations of the peptides revealed that all peptides investigated adopt an alpha-helical conformation when bound to phospholipid vesicles. Dye-releasing experiments from vesicles of phosphatidylglycerol (PG) showed that the membrane-permeabilizing activity of the analogs is not influenced by peptide hydrophobicity. In contrast, the permeability-enhancing activity on vesicles bearing high amounts of phosphatidylcholine (PC) increases drastically with enhanced peptide hydrophobicity, resulting in a reduced selectivity of more hydrophobic analogs for negatively charged membranes. Likewise, the peptide affinity to PC-rich membranes increases in the order of hydrophobicity. Correlation of peptide binding and membrane permeabilization of PC/PG (3:1) vesicles revealed that the observed differences in peptide activity on membranes of low negative surface charge are mainly caused by the different binding affinities. The antibacterial and hemolytic activity of the peptides increases with enhanced hydrophobicity. A strong correlation was found between the hemolytic effect and the bilayer-permeabilizing activity against PC-rich vesicles. Whereas the antibacterial specificity of the more hydrophobic analogs is retained for Escherichia coli, the specificity for Pseudomonas aeruginosa decreases with increasing hydrophobicity.
机译:麦角菌素是非洲爪蟾皮肤的抗菌肽。它们显示出广泛的针对原核细胞的活性,但裂解真核细胞的能力较弱。为了阐明肽疏水性对膜活性和选择性的影响,我们设计和合成了magainin 2酰胺类似物,其疏水性略有变化,但保留了疏水性矩,肽电荷和亲水性螺旋区对角。肽的圆二色性研究表明,所研究的所有肽与磷脂囊泡结合时均采用α-螺旋构象。磷脂酰甘油(PG)囊泡的染料释放实验表明,类似物的膜透化活性不受肽疏水性的影响。相反,带有大量磷脂酰胆碱(PC)的囊泡上的通透性增强活性随着肽疏水性的增强而急剧增加,从而导致更多疏水类似物对带负电荷的膜的选择性降低。同样,肽对富含PC的膜的亲和力按疏水性顺序增加。肽结合和PC / PG(3:1)囊泡的膜通透性的相关性表明,低负表面电荷的膜在肽活性上观察到的差异主要是由不同的结合亲和力引起的。肽的抗菌和溶血活性随着疏水性的增强而增加。发现溶血作用与针对富含PC的囊泡的双层透化活性之间存在很强的相关性。尽管疏水性更高的类似物对大肠杆菌保留了抗菌特异性,但铜绿假单胞菌的特异性却随着疏水性的增加而降低。

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