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Structure and Interactions of A Host Defense Antimicrobial Peptide Thanatin in Lipopolysaccharide Micelles Reveal Mechanism of Bacterial Cell Agglutination

机译:脂多糖胶束中宿主防御抗菌肽他汀的结构和相互作用揭示细菌细胞凝集的机理

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摘要

Host defense cationic Antimicrobial Peptides (AMPs) can kill microorganisms including bacteria, viruses and fungi using various modes of action. The negatively charged bacterial membranes serve as a key target for many AMPs. Bacterial cell death by membrane permeabilization has been well perceived. A number of cationic AMPs kill bacteria by cell agglutination which is a distinctly different mode of action compared to membrane pore formation. However, mechanism of cell agglutinating AMPs is poorly understood. The outer membrane lipopolysaccharide (LPS) or the cell-wall peptidoglycans are targeted by AMPs as a key step in agglutination process. Here, we report the first atomic-resolution structure of thanatin, a cell agglutinating AMP, in complex with LPS micelle by solution NMR. The structure of thanatin in complex with LPS, revealed four stranded antiparallel β-sheet in a ‘head-tail’ dimeric topology. By contrast, thanatin in free solution assumed an antiparallel β-hairpin conformation. Dimeric structure of thanatin displayed higher hydrophobicity and cationicity with sites of LPS interactions. MD simulations and biophysical interactions analyses provided mode of LPS recognition and perturbation of LPS micelle structures. Mechanistic insights of bacterial cell agglutination obtained in this study can be utilized to develop antibiotics of alternative mode of action.
机译:宿主防御阳离子抗菌肽(AMP)可以使用多种作用方式杀死微生物,包括细菌,病毒和真菌。带负电的细菌膜是许多AMP的关键靶标。膜通透性引起的细菌细胞死亡已广为人知。许多阳离子AMP通过细胞凝集杀死细菌,这与膜孔形成相比是一种截然不同的作用方式。但是,细胞凝集AMPs的机制了解甚少。作为凝集过程中的关键步骤,AMP将外膜脂多糖(LPS)或细胞壁肽聚糖作为目标。在这里,我们通过溶液NMR报告了与LPS胶束复合的坦那坦(一种细胞凝集的AMP)的第一个原子拆分结构。他汀与LPS的复合结构显示出“头尾”二聚体拓扑结构的四链反平行β-折叠。相比之下,游离溶液中的坦那坦假定为反平行的β-发夹构象。 thanatin的二聚体结构具有更高的疏水性和阳离子性,并具有LPS相互作用的位点。 MD模拟和生物物理相互作用分析提供了LPS识别和LPS胶束结构扰动的模式。在这项研究中获得的细菌细胞凝集的机理见解可用于开发其他作用方式的抗生素。

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