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Biophysical Investigations Elucidating the Mechanisms of Action of Antimicrobial Peptides and Their Synergism

机译:阐明抗菌肽作用机理及其协同作用的生物物理研究

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Biophysical and structural investigations are presented with a focus on the membrane lipid interactions of cationic linear antibiotic peptides such as magainin, PGLa, LL37, and melittin. Observations made with these peptides are distinct as seen from data obtained with the hydrophobic peptide alamethicin. The cationic amphipathic peptides predominantly adopt membrane alignments parallel to the bilayer surface; thus the distribution of polar and non-polar side chains of the amphipathic helices mirror the environmental changes at the membrane interface. Such a membrane partitioning of an amphipathic helix has been shown to cause considerable disruptions in the lipid packing arrangements, transient openings at low peptide concentration, and membrane disintegration at higher peptide-to-lipid ratios. The manifold supramolecular arrangements adopted by lipids and peptides are represented by the ‘soft membranes adapt and respond, also transiently’ (SMART) model. Whereas molecular dynamics simulations provide atomistic views on lipid membranes in the presence of antimicrobial peptides, the biophysical investigations reveal interesting details on a molecular and supramolecular level, and recent microscopic imaging experiments delineate interesting sequences of events when bacterial cells are exposed to such peptides. Finally, biophysical studies that aim to reveal the mechanisms of synergistic interactions of magainin 2 and PGLa are presented, including unpublished isothermal titration calorimetry (ITC), circular dichroism (CD) and dynamic light scattering (DLS) measurements that suggest that the peptides are involved in liposome agglutination by mediating intermembrane interactions. A number of structural events are presented in schematic models that relate to the antimicrobial and synergistic mechanism of amphipathic peptides when they are aligned parallel to the membrane surface.
机译:提出的生物物理和结构研究的重点是阳离子线性抗生素肽(如magainin,PGLa,LL37和蜂毒肽)的膜脂质相互作用。从用疏水性肽乐果霉素获得的数据来看,用这些肽进行的观察是不同的。阳离子两亲性肽主要采用平行于双层表面的膜排列方式。因此,两亲性螺旋的极性和非极性侧链的分布反映了膜界面处的环境变化。已经证明,两亲性螺旋的这种膜划分在脂质堆积安排,低肽浓度下的瞬时开口和高肽脂比下的膜崩解中引起相当大的破坏。脂类和肽类所采用的多种超分子排列方式以“软膜适应和反应,也能短暂发生”(SMART)模型为代表。分子动力学模拟在存在抗菌肽的情况下提供了脂质膜的原子观,而生物物理研究揭示了分子和超分子水平的有趣细节,最近的显微成像实验描绘了细菌细胞暴露于此类肽时有趣的事件序列。最后,提出了旨在揭示magainin 2和PGLa协同相互作用机制的生物物理研究,包括未发表的等温滴定热法(ITC),圆二色性(CD)和动态光散射(DLS)测量,这些结果表明该肽参与了该过程。通过介导膜间相互作用来抑制脂质体凝集。在示意性模型中显示了许多结构事件,这些结构事件与两亲性肽平行于膜表面排列时的抗微生物和协同作用机理有关。

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