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Protegrin interaction with lipid monolayers: Grazing incidence X-ray diffraction and X-ray reflectivity study

机译:protegrin与脂质单层的相互作用:掠入射X射线衍射和X射线反射率研究

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摘要

Interactions of the antimicrobial peptide protegrin-1 (PG-1) with phospholipid monolayers have been investigated by using grazing incidence X-ray diffraction (GIXD) and specular X-ray reflectivity (XR). The structure of a PG-1 film at the air-aqueous interface was also investigated by XR for the first time. Lipid A, dipalmitoyl-phosphatidylglycerol (DPPG) and dipalmitoyl-phosphatidylcholine (DPPC) monolayers were formed at the air-aqueous interface to mimic the surface of the bacterial cell wall and the outer leaflet of the erythrocyte cell membrane, respectively. Experiments were carried out under constant area conditions where the pressure changes upon insertion of peptide into the monolayer. GIXD data suggest that the greatest monolayer disruption produced by PG-1 is seen with the DPPG system at 20 mN/m since the Bragg peaks completely disappear after introduction of PG-1 to the system. PG-1 shows greater insertion into the lipid A system compared to the DPPC system when both films are held at the same initial surface pressure of 20 mN/m. The degree of insertion lessens at 30 mN/m with both DPPC and DPPG monolayer systems. XR data further reveal that PG-1 inserts primarily in the head group region of lipid monolayers. However, only the XR data of the anionic lipids suggest the existence of an additional adsorbed peptide layer below the head group of the monolayer. Overall the data show that the extent of peptide/lipid interaction and lipid monolayer disruption depends not only on the lipid composition of the monolayer, but the packing density of the lipids in the monolayer prior to the introduction of peptide to the subphase.
机译:通过使用掠入射X射线衍射(GIXD)和镜面X射线反射率(XR)研究了抗菌肽protegrin-1(PG-1)与磷脂单层的相互作用。 XR还首次研究了气-水界面上PG-1膜的结构。在空气-水界面处形成脂质A,二棕榈酰磷脂酰甘油(DPPG)和二棕榈酰磷脂酰胆碱(DPPC)单层,以分别模拟细菌细胞壁的表面和红细胞膜的小叶。实验是在恒定面积条件下进行的,其中肽插入单层后压力会发生变化。 GIXD数据表明,在20 mN / m的DPPG系统中,PG-1产生的单层破坏最大,因为将PG-1引入系统后布拉格峰完全消失了。当两个膜都保持在相同的20 mN / m的初始表面压力下时,与DPPC系统相比,PG-1在脂质A系统中的插入更大。对于DPPC和DPPG单层系统,插入程度均降低为30 mN / m。 XR数据进一步显示PG-1主要插入脂质单层的头基区域。但是,仅阴离子脂质的XR数据表明在单层头基下方存在额外的吸附肽层。总体数据显示,肽/脂质相互作用和脂质单层破坏的程度不仅取决于单层的脂质组成,还取决于在将肽引入亚相之前单层中脂质的堆积密度。

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