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首页> 外文期刊>International journal of peptide research and therapeutics >The Design and Functional Characterization of the Antimicrobial and Antibiofilm Activities of BMAP27-Melittin, a Rationally Designed Hybrid Peptide
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The Design and Functional Characterization of the Antimicrobial and Antibiofilm Activities of BMAP27-Melittin, a Rationally Designed Hybrid Peptide

机译:BMAP27-蜂毒肽,一种合理设计的杂合肽的抗微生物和抗生物膜活性的设计和功能表征

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BMAP-27 and melittin are two antimicrobial peptides (AMPs) that display potent antimicrobial activities against a wide range of microbes including multidrug resistant (MDR) strains of bacteria. Unfortunately, their significant toxicity against eukaryotic cells has hampered their development into clinically useful antibiotics. In this study, we have rationally designed a novel hybrid AMP aiming to retain the potent antimicrobial activities of BMAP-27 and melittin while enhancing their therapeutic index. The strategy employed in our design was based on combining the activities of individual alpha-helical fragments of each AMP to generate a novel hybrid AMP with improved characteristics compared to the parent peptides. Named as BMAP27-Melittin, the novel peptide displayed broad spectrum antimicrobial activity against standard representative Gram-positive and Gram-negative bacterial strains in the range of 1-7.5 A mu M. Moreover, the peptide managed to kill standard resistant strains of MDR bacteria with significant potency and with MIC values as low as 1 A mu M. BMAP27-Melittin also proved to exhibit potent antibiofilm activities while the hemolytic and antiproliferative studies against eukaryotic cells revealed that the peptide is exhibiting minimal toxicity at antimicrobial concentrations. Additionally, the molecular dynamics simulations of the peptide folding displayed that the hybrid peptide has folded into a well-defined alpha-helical structure; supporting the experimental findings. Overall, this work highlights the potential of rational design in generating improved AMPs with enhanced specificity that could be developed into successful therapeutics for the treatment of bacterial infections.
机译:BMAP-27和蜂毒肽是两种抗菌肽(AMP),它们对多种微生物(包括耐多药性(MDR)细菌菌株)表现出有效的抗菌活性。不幸的是,它们对真核细胞的显着毒性阻碍了它们向临床上有用的抗生素的发展。在这项研究中,我们合理地设计了一种新型的杂交AMP,旨在保留BMAP-27和蜂毒肽的有效抗菌活性,同时提高其治疗指数。在我们的设计中采用的策略是基于结合每个AMP的单个α-螺旋片段的活性,以生成一种新的杂化AMP,与亲本肽相比,该AMP具有改进的特性。该新型肽名为BMAP27-蜂毒肽,对1-7.5 AμM范围内的标准代表性革兰氏阳性和革兰氏阴性细菌菌株均具有广谱抗菌活性。此外,该肽还能够杀死MDR细菌的标准耐药菌株BMAP27-蜂毒肽也被证明具有强效的抗生物膜活性,而针对真核细胞的溶血和抗增殖研究表明,该肽在抗菌剂浓度下的毒性最小。另外,肽折叠的分子动力学模拟表明杂合肽已经折叠成明确定义的α-螺旋结构。支持实验结果。总的来说,这项工作强调了合理设计在产生具有增强特异性的改良AMPs方面的潜力,可以将其开发成成功的治疗细菌感染的疗法。

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