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General aspects of peptide selectivity towards lipid bilayers and cell membranes studied by variation of the structural parameters of amphipathic helical model peptides

机译:通过改变两亲性螺旋模型肽的结构参数研究肽对脂质双层和细胞膜的选择性的一般方面

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Model modified hydrophobicity (H), hydrophobic moment (μ) and angle subtended by charged residues (Φ) were synthesized to define the general roles of structural motifs of cationic helical peptides for membrane activity and selectivity. The peptide sets were based on a highly hydrophobic, non-selective KLA model peptide with high antimicrobial and hemolytic activity. Variation of the investigated parameters was found to be a suitable method for modifying peptide selectivity towards either neutral or highly negatively charged lipid bilayers. H and μ influenced selectivity preferentially via modification of activity on 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphatidylcholine (POPC) bilayers, while the size of the polar/hydrophobic angle affected the activity against 1-palmitoyl-2-oleoylphosphatidyl-DL-glycerol (POPG). The influence of the parameters on the activity determining step was modest in both lipid systems and the activity profiles were the result of the parameters' influence on the second less pronounced permeabilization step. Thus, the activity towards POPC vesicles was determined by the high permeabilizing efficiency, however, changes in the structural parameters preferentially influenced the relatively moderate affinity. In contrast, intensive peptide accumulation via electrostatic interactions was sufficient for the destabilization of highly negatively charged POPG lipid membranes, but changes in the activity profile, as revealed by the modification of Φ, seem to be preferentially caused by variation of the low permeabilizing efficiency. The parameters proved very effective also in modifying antimicrobial and hemolytic activity. However, their influence on cell selectivity was limited. A threshold value of hydrophobicity seems to exist which restricted the activity modifying potential of μ and Φ on both lipid bilayers and cell membranes.
机译:合成了模型修饰的疏水性(H),疏水力矩(μ)和带电残基对角(Φ),以定义阳离子螺旋肽结构基序对膜活性和选择性的一般作用。肽组基于具有高抗微生物和溶血活性的高度疏水性,非选择性KLA模型肽。发现所研究参数的变化是用于改变肽对中性或高度带负电的脂质双层的选择性的合适方法。 H和μ优先通过改变1-棕榈酰基-2-油酰基-sn-甘油-3-磷脂酰胆碱(POPC)双层的活性来影响选择性,而极性/疏水角的大小影响了针对1-棕榈酰基-2-的活性。油酰磷脂酰-DL-甘油(POPG)。在两个脂质系统中,参数对活性确定步骤的影响均是中等的,而活性谱是参数对第二个较不明显的透化步骤的影响的结果。因此,对POPC囊泡的活性由高透化效率决定,但是,结构参数的改变优先影响相对中等的亲和力。相反,通过静电相互作用的大量肽积累足以使高度带负电荷的POPG脂质膜失稳,但是,由Φ的修饰所揭示的活性分布的改变似乎优先由低透化效率的变化引起。事实证明,这些参数在改善抗菌和溶血活性方面也非常有效。但是,它们对细胞选择性的影响是有限的。似乎存在疏水性的阈值,该阈值限制了脂质双层和细胞膜上的μ和Φ的活性改变潜力。

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