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Potent antibacterial activity of MSI-1 derived from the magainin 2 peptide against drug-resistant bacteria

机译:MSI-1的有效抗菌活性来自Magainin 2肽的Magainin 2肽免受耐药细菌的

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The structural modification of existing AMPs is an effective strategy to develop antimicrobial agents with high-efficiency, low-cost and low-toxicity antimicrobial agents. Methods: Here, we truncated 14-amino-acids at the N-terminus of MSI-78 to obtain MSI and further modified MSI to obtain four peptide analogs: MSI-1, MSI-2, MSI-3 and MSI-4. These peptide mutants were evaluated regarding their antibacterial activity against various sensitive or resistant bacteria; toxicity against mammalian cells or mice; and stability against violent pH, temperature variations and high NaCl concentrations. Finally, we also elucidated the possible mechanisms underlying its mode of action. Results: The results showed that MSI-1 and MSI-3 displayed activity that was superior to that of MSI-78 with MICs of 4-16 μg/ml and MBCs of 8-64 μg/ml, respectively, especially against drug-resistant bacteria, due to the increase in percent helicity and amphiphilicity. However, MSI-3, with higher hydrophobicity and antibacterial activity, had a relatively higher hemolysis rate and toxicity than MSI-1. MSI-1 exerted rapid bactericidal activity and effectively improved the survival rate and wound closure in penicillin-resistant E. coli-infected mice by eliminating bacterial counts in mouse organs or subeschar, further inhibiting the systemic dissemination of bacteria. Additionally, MSI-1 displayed perfect stability against violent pH, temperature variations and high NaCl concentrations and has the ability to circumvent the development of drug resistance. In terms of the mode of action, we found that at the super-MIC level, MSI-1 exhibited direct antimicrobial activity by disrupting the integrity of the bacterial cell membrane, while at the sub-MIC level, it bound to bacterial DNA to inhibit DNA replication and protein expression and ultimately disrupted bacterial biological function. Conclusions: This novel peptide MSI-1 could be a potential candidate for drug development against infection induced by drug-resistant bacteria.? The author(s).
机译:现有安培的结构改性是一种具有高效,低成本和低毒性抗微生物剂的抗微生物剂的有效策略。方法:这里,我们在MSI-78的N-末端截断14-氨基酸,得到MSI,进一步修饰的MSI,得到四种肽类似物:MSI-1,MSI-2,MSI-3和MSI-4。对其对各种敏感或抗菌细菌的抗菌活性进行评估这些肽突变体;对哺乳动物细胞或小鼠的毒性;抗剧烈pH,温度变化和高NaCl浓度的稳定性。最后,我们还阐明了其行动方式的可能机制。结果:结果表明,MSI-1和MSI-3显示的活性优于MSI-78,MIC分别具有4-16μg/ mL和8-64μg/ mL的MBC,特别是针对耐药性细菌,由于肝脏百分比和两亲性增加。然而,具有较高疏水性和抗菌活性的MSI-3具有比MSI-1相对较高的溶血率和毒性。 MSI-1通过消除小鼠器官或次氨酸中的细菌计数,有效地改善了青霉素抗性大肠杆菌的小肠感染小鼠的生存率和伤口闭合,进一步抑制了细菌的全身传播。此外,MSI-1对抗剧烈pH,温度变化和高NaCl浓度的完美稳定性,并且能够避免耐药性的发展。就作用方式而言,我们发现在超级MIC水平下,MSI-1通过破坏细菌细胞膜的完整性而表现出直接的抗微生物活性,而在亚麦麦米水平上,它与细菌DNA相结合抑制DNA复制和蛋白质表达,最终破坏了细菌生物学功能。结论:这种新型肽MSI-1可以是耐药细菌诱导的感染的药物发育的潜在候选者。作者。

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