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Structure-Function Analysis of Tritrpticin Analogs: Potential Relationships between Antimicrobial Activities, Model Membrane Interactions, and Their Micelle-Bound NMR Structures

机译:Tritrpticin类似物的结构功能分析:抗菌活性,模型膜相互作用及其胶束束缚NMR结构之间的潜在关系。

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摘要

Tritrpticin is a member of the cathelicidin family of antimicrobial peptides. Starting from its native sequence (VRRFPWWWPFLRR), eight synthetic peptide analogs were studied to investigate the roles of specific residues in its biological and structural properties. This included amidation of the C-terminus paired with substitutions of its cationic and Phe residues, as well as the Pro residues that are important for its two-turn micelle-bound structure. These analogs were determined to have a significant antimicrobial potency. In contrast, two other peptide analogs, those with the three Trp residues substituted with either Phe or Tyr residues are not highly membrane perturbing, as determined by leakage and flip-flop assays using fluorescence spectroscopy. Nevertheless the Phe analog has a high activity; this suggests an intracellular mechanism for antimicrobial activity that may be part of the overall mechanism of action of native tritrpticin as a complement to membrane perturbation. NMR experiments of these two Trp-substituted peptides showed the presence of multiple conformers. The structures of the six remaining Trp-containing analogs bound to dodecylphosphocholine micelles showed major, well-defined conformations. These peptides are membrane disruptive and show a wide range in hemolytic activity. Their micelle-bound structures either retain the typical turn-turn structure of native tritrpticin or have an extended α-helix. This work demonstrates that closely related antimicrobial peptides can often have remarkably altered properties with complex influences on their biological activities.
机译:Tritrpticin是Cathelicidin抗菌肽家族的成员。从其天然序列(VRRFPWWWPFLRRRR)开始,研究了八个合成的肽类似物,以研究特定残基在其生物学和结构特性中的作用。这包括C末端的酰胺化以及其阳离子和Phe残基的取代,以及对其两圈胶束结合结构很重要的Pro残基。确定这些类似物具有显着的抗菌效力。相比之下,其他两种肽类似物,即三个Trp残基被Phe或Tyr残基取代的肽类似物,其膜扰动程度不高,这是通过使用荧光光谱法进行的泄漏和触发分析确定的。然而,Phe类似物具有高活性。这表明抗微生物活性的细胞内机制可能是天然曲美霉素作为膜微扰的补充的整体作用机制的一部分。这两个Trp取代的肽的NMR实验表明存在多个构象体。与十二烷基磷酸胆碱胶束结合的其余六个含Trp的类似物的结构显示出主要的,明确定义的构象。这些肽具有破坏膜的作用,并显示出广泛的溶血活性。它们的胶束结合结构要么保留了天然三苯丁三酸的典型的转折结构,要么具有扩展的α-螺旋。这项工作表明,密切相关的抗菌肽通常会具有显着改变的特性,对其生物活性具有复杂的影响。

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