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Membrane binding and permeation by indolicidin analogs studied by a biomimetic lipid/polydiacetylene vesicle assay.

机译:通过仿生脂质/聚二乙炔囊泡测定法研究的吲哚美定类似物的膜结合和渗透。

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Membrane binding and relative penetration of indolicidin analogs were studied using lipid/polydiacetylene (PDA) chromatic biomimetic membranes. Colorimetric and fluorescence analyses determined that an indolicidin analog with a proline and tryptophan residue substituted with lysines showed more pronounced bilayer surface interactions, while indolicidin and particularly an indolicidin analog in which all prolines were replaced with alanine residues exhibited deeper insertion into the lipid bilayer. The colorimetric data demonstrated that more pronounced blue-red transitions were observed when the chromatic vesicles incorporated lipopolysaccharide (LPS) within the lipid bilayer, indicating that LPS promoted preferred binding and incorporation of the peptides at the lipid/water interface. The fluorescence quenching experiments further confirmed this outcome. The results indicate that the antibacterial activity of indolicidin most likely requires initial binding to the LPS moieties within bacterial membranes, as well as disruption of the bilayer interface. The degree of hemolysis induced by the analogs, on the other hand, correlated to the extent of penetration into the hydrophobic core of the lipid assembly.
机译:使用脂质/聚二乙炔(PDA)彩色仿生膜研究了吲哚美定类似物的膜结合和相对渗透。比色法和荧光分析确定具有脯氨酸和色氨酸残基被赖氨酸取代的吲哚美定类似物表现出更明显的双层表面相互作用,而吲哚美丁,尤其是其中所有脯氨酸均被丙氨酸残基取代的吲哚美丁类似物表现出更深地插入脂质双层中。比色数据表明,当彩色囊泡在脂质双层中掺入脂多糖(LPS)时,观察到更明显的蓝红色过渡,表明LPS促进了肽在脂质/水界面的优选结合和掺入。荧光猝灭实验进一步证实了这一结果。结果表明,吲哚美定的抗菌活性最可能需要与细菌膜内的LPS部分进行初始结合,并破坏双层界面。另一方面,类似物引起的溶血程度与渗透到脂质组装体的疏水核中的程度有关。

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