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High Specific Selectivity and Membrane-Active Mechanism of Synthetic Cationic Hybrid Antimicrobial Peptides Based on the Peptide FV7

机译:基于FV7肽的合成阳离子杂合抗菌肽的高比选择性和膜活性机理

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摘要

Hybrid peptides integrating different functional domains of peptides have many advantages, such as remarkable antimicrobial activity, lower hemolysis and ideal cell selectivity, compared with natural antimicrobial peptides. FV7 (FRIRVRV-NH2), a consensus amphiphilic sequence was identified as being analogous to host defense peptides. In this study, we designed a series of hybrid peptides FV7-LL-37 (17–29) (FV-LL), FV7-magainin 2 (9–21) (FV-MA) and FV7-cecropin A (1–8) (FV-CE) by combining the FV7 sequence with the small functional sequences LL-37 (17–29) (LL), magainin 2 (9–21) (MA) and cecropin A (1–8) (CE) which all come from well-described natural peptides. The results demonstrated that the synthetic hybrid peptides, in particular FV-LL, had potent antibacterial activities over a wide range of Gram-negative and Gram-positive bacteria with lower hemolytic activity than other peptides. Furthermore, fluorescent spectroscopy indicated that the hybrid peptide FV-LL exhibited marked membrane destruction by inducing outer and inner bacterial membrane permeabilization, while scanning electron microscopy (SEM) and transmission electron microscopy (TEM) demonstrated that FV-LL damaged membrane integrity by disrupting the bacterial membrane. Inhibiting biofilm formation assays also showed that FV-LL had similar anti-biofilm activity compared with the functional peptide sequence FV7. Synthetic cationic hybrid peptides based on FV7 could provide new models for combining different functional domains and demonstrate effective avenues to screen for novel antimicrobial agents.
机译:与天然抗菌肽相比,整合了肽不同功能域的杂合肽具有许多优势,例如卓越的抗菌活性,较低的溶血作用和理想的细胞选择性。 FV7(FRIRVRV-NH2),一个共有的两亲序列被鉴定为类似于宿主防御肽。在这项研究中,我们设计了一系列杂合肽FV7-LL-37(17–29)(FV-LL),FV7-magainin 2(9–21)(FV-MA)和FV7-天蚕素A(1–8 )(FV-CE),将FV7序列与小功能序列LL-37(17–29)(LL),magainin 2(9–21)(MA)和天蚕素A(1–8)(CE)结合使用,都来自描述良好的天然肽。结果表明,合成杂合肽,特别是FV-LL,在广泛的革兰氏阴性和革兰氏阳性细菌中均具有有效的抗菌活性,且溶血活性低于其他肽。此外,荧光光谱表明,杂合肽FV-LL通过诱导细菌内外膜通透性而表现出明显的膜破坏,而扫描电子显微镜(SEM)和透射电子显微镜(TEM)则表明FV-LL通过破坏细菌的膜完整性而破坏了膜的完整性。细菌膜。抑制性生物膜形成试验还显示,与功能性肽序列FV7相比,FV-LL具有相似的抗生物膜活性。基于FV7的合成阳离子杂合肽可以为组合不同功能域提供新模型,并展示筛选新型抗菌剂的有效途径。

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