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Structural contributions to the intracellular targeting strategies of antimicrobial peptides.

机译:对抗菌肽的细胞内靶向策略的结构性贡献。

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The interactions of cationic amphipathic antimicrobial peptides (AMPs) with anionic biological membranes have been the focus of much research aimed at improving the activity of such compounds in the search for therapeutic leads. However, many of these peptides are thought to have other polyanions, such as DNA or RNA, as their ultimate target. Here a combination of fluorescence and circular dichroism (CD) spectroscopies has been used to assess the structural properties of amidated versions of buforin II, pleurocidin and magainin 2 that support their varying abilities to translocate through bacterial membranes and bind to double stranded DNA. Unlike magainin 2 amide, a prototypical membrane disruptive AMP, buforin II amide adopts a poorly helical structure in membranes closely mimicking the composition of Gram negative bacteria, such as Escherichia coli, and binds to a short duplex DNA sequence with high affinity, ultimately forming peptide-DNA condensates. The binding affinities of the peptides to duplex DNA are shown to be related to the structural changes that they induce. Furthermore, CD also reveals the conformation of the bound peptide buforin II amide. In contrast with a synthetic peptide, designed to adopt a perfect amphipathic alpha-helix, buforin II amide adopts an extended or polyproline II conformation when bound to DNA. These results show that an alpha-helix structure is not required for the DNA binding and condensation activity of buforin II amide.
机译:阳离子两亲性抗菌肽(AMPs)与阴离子生物膜的相互作用一直是许多旨在改善此类化合物在寻找治疗先导中的活性的研究重点。然而,许多这样的肽被认为具有其他聚阴离子,例如DNA或RNA,作为其最终靶标。在这里,荧光光谱和圆二色性(CD)光谱学的组合已用于评估buforin II,pleurocidin和magainin 2的酰胺化形式的结构特性,这些结构形式支持它们改变的能力,可通过细菌膜转运并结合双链DNA。不同于原型膜破坏性AMP的magainin 2酰胺,buforin II酰胺在膜中的螺旋结构较差,紧密模仿革兰氏阴性细菌(如大肠杆菌)的组成,并以高亲和力与短双链DNA序列结合,最终形成肽-DNA冷凝物。肽与双链体DNA的结合亲和力与它们诱导的结构变化有关。此外,CD还揭示了结合的肽buforin II酰胺的构象。与设计为采用完美的两亲性α-螺旋的合成肽相反,buforin II酰胺与DNA结合时采用扩展或多脯氨酸II构象。这些结果表明,buforin II酰胺的DNA结合和缩合活性不需要α-螺旋结构。

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