首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Multiple Peptide Resistance Factor (MprF)-mediated Resistance of Staphylococcus aureus against Antimicrobial Peptides Coincides with a Modulated Peptide Interaction with Artificial Membranes Comprising Lysyl-Phosphatidylglycerol
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Multiple Peptide Resistance Factor (MprF)-mediated Resistance of Staphylococcus aureus against Antimicrobial Peptides Coincides with a Modulated Peptide Interaction with Artificial Membranes Comprising Lysyl-Phosphatidylglycerol

机译:多种肽抗性因子(MprF)介导的金黄色葡萄球菌对抗菌肽的耐药性与带有赖氨酸-磷脂酰甘油的人工膜的调节肽相互作用相吻合。

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摘要

Modification of the membrane lipid phosphatidylglycerol (PG) of Staphylococcus aureus by enzymatic transfer of a l-lysine residue leading to lysyl-PG converts the net charge of PG from −1 to +1 and is thought to confer resistance to cationic antimicrobial peptides (AMPs). Lysyl-PG synthesis and translocation to the outer leaflet of the bacterial membrane are achieved by the membrane protein MprF. Consequently, mutants lacking a functional mprF gene are in particular vulnerable to the action of AMPs. Hence, we aim at elucidating whether and to which extent lysyl-PG modulates membrane binding, insertion, and permeabilization by various AMPs. Lysyl-PG was incorporated into artificial lipid bilayers, mimicking the cytoplasmic membrane of S. aureus. Moreover, we determined the activity of the peptides against a clinical isolate of S. aureus strain SA113 and two mutants lacking a functional mprF gene and visualized peptide-induced ultrastructural changes of bacteria by transmission electron microscopy. The studied peptides were: (i) NK-2, an α-helical fragment of mammalian NK-lysin, (ii) arenicin-1, a lugworm β-sheet peptide, and (iii) bee venom melittin. Biophysical data obtained by FRET spectroscopy, Fourier transform infrared spectroscopy, and electrical measurements with planar lipid bilayers were correlated with the biological activities of the peptides. They strongly support the hypothesis that peptide-membrane interactions are a prerequisite for eradication of S. aureus. However, degree and mode of modulation of membrane properties such as fluidity, capacitance, and conductivity were unique for each of the peptides. Altogether, our data support and underline the significance of lysyl-PG for S. aureus resistance to AMPs.
机译:通过l-赖氨酸残基的酶促转移导致赖氨酰-PG的金黄色葡萄球菌的膜脂质磷脂酰甘油(PG)的修饰将PG的净电荷从-1转换为+1,并被认为赋予了对阳离子抗菌肽(AMPs)的抗性)。赖氨酰-PG的合成和易位到细菌膜的外部小叶是通过膜蛋白MprF实现的。因此,缺乏功能性mprF基因的突变体特别容易受到AMPs作用的影响。因此,我们旨在阐明赖氨酰-PG是否通过各种AMP调节膜的结合,插入和通透性。将赖氨酰-PG掺入到人工脂质双层中,模仿金黄色葡萄球菌的细胞质膜。此外,我们确定了针对临床分离的金黄色葡萄球菌菌株SA113和两个缺少功能性mprF基因的突变体的肽的活性,并通过透射电子显微镜观察了肽诱导的细菌超微结构变化。研究的肽为:(i)NK-2,哺乳动物NK-赖氨酸的α螺旋片段,(ii)槟榔素-1,-1虫β-折叠肽,和(iii)蜂毒蜂毒素。通过FRET光谱,傅立叶变换红外光谱和使用平面脂质双层进行电学测量获得的生物物理数据与肽的生物活性相关。他们坚决支持以下假设:肽膜相互作用是根除金黄色葡萄球菌的先决条件。但是,每种肽的膜特性(例如流动性,电容和电导率)的调节程度和调节方式都是独特的。总之,我们的数据支持并强调了赖氨酰-PG对金黄色葡萄球菌对AMPs的抗性的重要性。

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