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首页> 外文期刊>Scientific reports. >Antimicrobial peptides at work: interaction of myxinidin and its mutant WMR with lipid bilayers mimicking the P. aeruginosa and E. coli membranes
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Antimicrobial peptides at work: interaction of myxinidin and its mutant WMR with lipid bilayers mimicking the P. aeruginosa and E. coli membranes

机译:抗微生物肽在工作中:痣和其突变体WMR与模仿P.铜绿假单胞菌和大肠杆菌膜的脂质双层的相互作用

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Antimicrobial peptides are promising candidates as future therapeutics in order to face the problem of antibiotic resistance caused by pathogenic bacteria. Myxinidin is a peptide derived from the hagfish mucus displaying activity against a broad range of bacteria. We have focused our studies on the physico-chemical characterization of the interaction of myxinidin and its mutant WMR, which contains a tryptophan residue at the N-terminus and four additional positive charges, with two model biological membranes (DOPE/DOPG 80/20 and DOPE/DOPG/CL 65/23/12), mimicking respectively Escherichia coli and Pseudomonas aeruginosa membrane bilayers. All our results have coherently shown that, although both myxinidin and WMR interact with the two membranes, their effect on membrane microstructure and stability are different. We further have shown that the presence of cardiolipin plays a key role in the WMR-membrane interaction. Particularly, WMR drastically perturbs the DOPE/DOPG/CL membrane stability inducing a segregation of anionic lipids. On the contrary, myxinidin is not able to significantly perturb the DOPE/DOPG/CL bilayer whereas interacts better with the DOPE/DOPG bilayer causing a significant perturbing effect of the lipid acyl chains. These findings are fully consistent with the reported greater antimicrobial activity of WMR against P. aeruginosa compared with myxinidin.
机译:抗微生物肽是希望候选人作为未来的治疗方法,以面对致病细菌引起的抗生素抗性问题。骨髓苷是一种衍生自血管粘液的肽,所述虎尾草粘液显示出抗广泛细菌的活性。我们专注于我们对痣和其突变体WMR相互作用的物理化学表征的研究,其中含有N-末端的色氨酸残留物和四种额外的正电荷,具有两种模型生物膜(DOPE / DOPG 80/20和DOPE / DOPG / CL 65/23/12),分别模仿大肠杆菌和假单胞菌铜绿假单胞菌膜双层。我们所有的结果都是连贯的表明,尽管骨髓苷和WMR都与两个膜相互作用,但它们对膜微观结构和稳定性的影响是不同的。我们进一步表明,心癫痫的存在在WMR膜相互作用中起着关键作用。特别地,WMR大大扰乱了诱导阴离子脂质的偏析的掺杂剂/ DOPG / CL膜稳定性。相反,骨髓苷不能显着扰动涂料/多样/ Cl双层,而使用掺杂剂/ DOPG双层相互作用,导致脂质酰基链的显着扰动效果。与近氧丙胺相比,这些发现与据报道的WMR对铜绿假单胞菌的更大抗微生物活性完全一致。

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