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具有广谱抗菌活性的拓扑结构不同的约束性抗菌肽的评价。

Evaluation of topologically distinct constrained antimicrobial peptides with broad-spectrum antimicrobial activity.

机构信息

Institute of Scientific and Technical Information of China, Beijing, 100038, China.

出版信息

Org Biomol Chem. 2018 Aug 15;16(32):5764-5770. doi: 10.1039/c8ob00483h.

Abstract

Antimicrobial peptides (AMPs) are short cationic peptides with a high affinity for membranes and emerged as a promising therapeutic approach with potential for treating infectious diseases. Chemical stabilization of short peptides proved to be a successful approach for enhancing their bio-physical properties. Herein, we designed and synthesized a panel of conformationally constrained antimicrobial peptides with either α-helical or β-hairpin conformation using templating strategies. These synthetic short constrained peptides possess different topological distributions of hydrophobic and hydrophilic residues and displayed distinct antimicrobial activity. Notably, the conformationally constrained α-helical peptides displayed a faster internalization into the bacteria cells compared to their β-hairpin analogues. These synthetic short constrained peptides showed killing effects on a broad spectrum of microorganisms mainly through pore formation and membrane damage which provided a potentially promising skeleton for the next generation of stabilized antimicrobial peptides.

摘要

抗菌肽(AMPs)是具有高膜亲和力的短阳离子肽,已成为一种有前途的治疗方法,有望用于治疗传染病。短肽的化学稳定化已被证明是增强其生物物理特性的一种成功方法。本文设计并合成了一系列具有α-螺旋或β-发夹构象的构象约束抗菌肽,采用模板策略。这些合成的短约束肽具有不同的疏水性和亲水性残基拓扑分布,并表现出不同的抗菌活性。值得注意的是,构象约束的α-螺旋肽比其β-发夹类似物更快地进入细菌细胞内。这些合成的短约束肽对广谱微生物具有杀伤作用,主要通过形成孔和破坏膜来实现,这为下一代稳定抗菌肽提供了一个有前途的骨架。

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Membrane-Active Small Molecules: Designs Inspired by Antimicrobial Peptides.膜活性小分子:受抗菌肽启发的设计
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