首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Disruption of Asymmetric Lipid Bilayer Models Mimicking the Outer Membrane of Gram-Negative Bacteria by an Active Plasticin
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Disruption of Asymmetric Lipid Bilayer Models Mimicking the Outer Membrane of Gram-Negative Bacteria by an Active Plasticin

机译:用活性塑料模拟革兰阴性细菌外膜的不对称脂质双层模型的破坏

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摘要

The outer membrane (OM) of Gram-negative bacteria is a complex and asymmetric bilayer that antimicrobial peptides must disrupt in order to provoke the cell lysis. The inner and external leaflets of the OM are mainly composed of phospholipids (PL), and lipopolysaccharide (LPS), respectively. Supported lipid bilayers are interesting model systems to mimic the lipid asymmetric scaffold of the OM and determine the quantitative and mechanistic effect of antimicrobial agents, using complementary physicochemical techniques. We report the formation of asymmetric PL/LPS bilayers using the Langmuir-Blodgett/Langmuir-Schaefer technique on two different surfaces (sapphire and mica) with synthetic phospholipids constituting the inner leaflet and bacteria extracted mutant LPS making up the outer one. The combination of neutron reflectometry and atomic force microscopy techniques allowed the examination of the asymmetric scaffold structure along the normal to the interface and its surface morphology in buffer conditions. Our results allow discrimination of two structurally related peptides, one neutral and inactive, and the other cationic and active. The active cationic plasticin PTCDA1-KF disrupts the asymmetric OM at relevant concentrations through a carpeting scenario characterized by a dramatic removal of lipid molecules from the surface.
机译:革兰氏阴性细菌的外膜(OM)是抗微生物肽必须扰乱的复合物和不对称双层,以挑选细胞裂解。 OM的内部和外部小叶分别主要由磷脂(PL)和脂多糖(LPS)组成。支持的脂质双层是有趣的模型系统,用于模拟OM的脂质不对称支架并确定使用互补物理化学技术的抗微生物剂的定量和机械效应。我们在两个不同表面(蓝宝石和云母)上使用Langmuir-Blodgett / Langmuir-Schaefer技术进行了非对称PL / LPS双层的形成,其具有构成内部传单和细菌的合成磷脂,提取突变体LPS构成外部。中子反射率和原子力显微镜技术的组合允许在缓冲条件下沿正常的界面和其表面形态检查不对称支架结构。我们的结果允许歧视两个结构相关的肽,一种中性和无活性,以及​​其他阳离子和活性。活性阳离子塑料蛋白PTCDA1-KF通过地毯场景来破坏相关浓度的不对称OM,其特征在于从表面急剧去除脂质分子。

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