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Peptides at the Interface: Self-Assembly of Amphiphilic Designer Peptides and Their Membrane Interaction Propensity

机译:界面上的肽:两亲性设计肽的自组装及其膜相互作用的倾向

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摘要

Self-assembling amphiphilic designer peptides have been successfully applied as nanomaterials in biomedical applications. Understanding molecular interactions at the peptide membrane interface is crucial, since interactions at this site often determine (in)compatibility. The present study aims to elucidate how model membrane systems of different complexity (in particular single-component phospholipid bilayers and lipoproteins) respond to the presence of amphiphilic designer peptides. We focused on two short anionic peptides, V4WD2 and A(6)YD, which are structurally similar but showed a different self-assembly behavior. A(6)YD self-assembled into high aspect ratio nanofibers at low peptide concentrations, as evidenced by synchrotron small-angle X-ray scattering and electron microscopy. These supramolecular assemblies coexisted with membranes without remarkable interference. In contrast, V4WD2 formed only loosely associated assemblies over a large concentration regime, and the peptide promoted concentration-dependent disorder on the membrane arrangement. Perturbation effects were observed on both membrane systems although most likely induced by different modes of action. These results suggest that membrane activity critically depends on the peptide's inherent ability to form highly cohesive supramolecular structures.
机译:自组装的两亲性设计肽已成功地用作生物医学应用中的纳米材料。了解肽膜界面上的分子相互作用至关重要,因为该位点的相互作用通常决定了(不)相容性。本研究旨在阐明不同复杂性的模型膜系统(特别是单组分磷脂双层和脂蛋白)如何响应两亲性设计肽的存在。我们专注于两个短的阴离子肽V4WD2和A(6)YD,它们在结构上相似,但显示出不同的自组装行为。 A(6)YD在低肽浓度下自组装成高长径比的纳米纤维,通过同步加速器小角度X射线散射和电子显微镜证明。这些超分子组装体与膜共存,没有明显的干扰。相反,V4WD2在大浓度范围内仅形成松散相关的装配,而肽促进了膜排列上的浓度依赖性疾病。虽然很可能是由不同的作用方式引起的,但在两种膜系统上都观察到了扰动作用。这些结果表明,膜活性关键取决于肽形成高内聚超分子结构的固有能力。

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