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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Interactions of 'de novo' designed peptides with bacterial membranes: Implications in the antimicrobial activity
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Interactions of 'de novo' designed peptides with bacterial membranes: Implications in the antimicrobial activity

机译:与细菌膜的“de novo”设计肽的相互作用:抗菌活性的影响

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Antimicrobial peptides are small molecules that display antimicrobial activity against a wide range of pathogens. In a previous work, by using model membranes we studied P6, a peptide that shows no antimicrobial activity, and P6.2, which exhibits antibacterial activity. In the present work we aimed to unravel the mode of action of these peptides by studying their interaction in vivo with Escherichia coli and Staphylococcus aureus. In this sense, to study the interactions with bacterial cells and their effect on the bacterial surface, zeta potential, spectroscopic, and microscopic methodologies were applied. P6.2 exhibits a higher affinity toward both bacterial envelopes. The ability of both peptides to disrupt afterwards the bacterial membrane was also studied. Both peptides were able to induce bacterial membrane damage, but higher concentrations of P6 were needed to obtain results comparable to those obtained for P6.2. Additionally, P6.2 exhibited faster damage kinetics. Altogether, these data allow postulating, in a physiologic model, that the lower affinity of P6 for bacterial envelope results in a minor final concentration of the peptide in the bacterial membrane unable to trigger the antimicrobial activity. Finally, the fact that the active P6.2 has the same MIC value for the Gram-positive and Gram-negative bacteria tested, but not the same profile in the permeabilization assays, reinforces the question of whether cell wall components act as electrostatic barriers preventing or minimizing membrane-active AMPs lethal action at the membrane level.
机译:抗微生物肽是对各种病原体显示抗微生物活性的小分子。在先前的工作中,通过使用模型膜,我们研究了P6,肽没有表现出抗菌活性的P6.2。在目前的工作中,我们旨在通过使用大肠杆菌和金黄色葡萄球菌的体内相互作用来解开这些肽的作用方式。从这个意义上讲,研究与细菌细胞的相互作用及其对细菌表面,Zeta电位,光谱和微观方法的影响。 P6.2对两种细菌包络具有更高的亲和力。还研究了肽以后扰乱细菌膜的能力。两种肽都能够诱导细菌膜损伤,但需要较高浓度的P6,以获得与P6.2获得的结果相当。此外,P6.2表现出更快的损伤动力学。总之,这些数据允许在生理模型中假设P6对细菌包膜的较低亲和力导致细菌膜中的肽的少量浓度不能引发抗微生物活性。最后,活性P6.2具有所测试的革兰氏阳性和革兰氏阴性细菌的相同麦克风值,但在渗透测定中没有相同的轮廓,加强了细胞壁组分是作为防静电障碍的问题的问题或最小化膜水平的膜活性AMPS致命作用。

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