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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Rationally designed antimicrobial peptides: Insight into the mechanism of eleven residue peptides against microbial infections
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Rationally designed antimicrobial peptides: Insight into the mechanism of eleven residue peptides against microbial infections

机译:理性设计的抗微生物肽:深入了解11个残留肽对微生物感染的机制

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The widespread abuse of antibiotics has led to the use of antimicrobial peptides (AMPs) as a replacement for the existing conventional therapeutic agents for combating microbial infections. The broad-spectrum activity and the resilient nature of AMPs has mainly aggrandized their utilization. Here, we report the design of non-toxic, non-hemolytic and salt tolerant undecapeptides (AMP21-24), derived by modification of a peptide P5 (NH2-LRWLRRLCONH2) reported earlier by our group. Our results depict that the designed peptides show potency against several bacterial as well as fungal strains. Circular dichroism (CD) spectroscopy in combination with molecular dynamic (MD) simulations confirm that the peptides are unstructured. Intrinsic tryptophan fluorescence quenching as well as interaction studies using isothermal calorimetry (ITC) of these peptides in the presence of biological microbial membrane mimics establish the strong microbial membrane affinity of these AMPs. Membrane permeabilization assay and cytoplasmic membrane depolarization studies of Pseudomonas aeruginosa and Candida albicans in the presence of AMPs also hint towards the AMP-membrane interactions. Leakage of calcein dye from membrane mimic liposomes, live cell NMR and field emission scanning electron microscopy (FESEM) studies suggest that the AMPs may be primarily involved in membrane perturbation leading to release of intracellular substances resulting in subsequent microbial cell death. Confocal laser scanning microscopy (CLSM) shows localization of the peptides throughout the cell, indicating the possibility of secondary mode of actions. Electrostatic interactions seem to govern the preferential binding of the AMPs to the microbial membranes in comparison to the mammalian membranes as seen from the MD simulations.
机译:抗生素的广泛滥用导致使用抗微生物肽(AMPS)作为现有常规治疗剂用于调用微生物感染的替代品。广谱活动和AMPS的弹性性质主要促使它们的利用。在这里,我们报告了通过修饰我们的组提前报告的肽P5(NH2-LRWLRRCONH2)的肽P5(NH2-LRWLRRCONH2)的无毒,非溶血和耐盐未屠昂蚜虫(AMP21-24)的设计。我们的结果描绘了设计的肽对几种细菌以及真菌菌株表现出效力。圆形二色性(CD)光谱与分子动态(MD)模拟组合确认肽是非结构化的。本征的色氨酸荧光猝灭以及使用等温热量法(ITC)在生物微生物膜模拟物存在下这些肽的相互作用研究建立了这些安培的强微生物膜亲和力。在AMPS存在下假单胞菌铜绿假单胞菌和念珠菌蛋白酶蛋白酶膜的细胞质膜去极化研究以及朝向AMP膜相互作用的提示。来自膜模拟脂质体的Calcein染料泄漏,活细胞NMR和场发射扫描电子显微镜(FESEM)研究表明,AMPS可以主要参与导致细胞内物质释放导致随后的微生物细胞死亡的膜扰动。共聚焦激光扫描显微镜(CLSM)显示肽整个细胞的定位,表明次要动作模式的可能性。静电相互作用似乎与从MD模拟中看出的哺乳动物膜相比,静电相互作用似乎控制AMPS到微生物膜的优先结合。

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