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含非天然氨基酸的抗菌肽对抗烧伤创面感染的合理进化

Rational Evolution of Antimicrobial Peptides Containing Unnatural Amino Acids to Combat Burn Wound Infections.

作者信息

Xiong Meng, Chen Ming, Zhang Jue

机构信息

Department of Burn and Plastic Surgery, Zhongda Hospital Southeast University, Nanjing, 210009, China.

出版信息

Chem Biol Drug Des. 2016 Sep;88(3):404-10. doi: 10.1111/cbdd.12768. Epub 2016 May 5.

Abstract

Antimicrobial peptides have long been raised as a promising strategy to combat bacterial infection in burn wounds. Here, we attempted to rationally design small antimicrobial peptides containing unnatural amino acids by integrating in silico analysis and in vitro assay. Predictive quantitative sequence-activity models were established and validated rigorously based on a large panel of nonamer antimicrobial peptides with known antibacterial activity. The best quantitative sequence-activity model predictor was employed to guide genetic evolution of a peptide population. In the evolution procedure, a number of unnatural amino acids with desired physicochemical properties were introduced, resulting in a genetic evolution-improved population, from which seven peptide candidates with top scores, containing 1-3 unnatural amino acids, and having diverse structures were successfully identified, and their antibacterial potencies against two antibiotic-resistant bacterial strains isolated from infected burn wounds were measured using in vitro susceptibility test. Consequently, four (WL-Orn-LARKIV-NH2 , ARKRWF-Dab-FL-NH2 , KFI-Hag-IWR-Orn-R-NH2 and YW-Hag-R-Cit-RF-Orn-N-NH2 ) of the seven tested peptides were found to be more potent than reference Bac2A, the smallest naturally occurring broad spectrum antimicrobial peptide. Molecular dynamics simulations revealed that the designed peptides can fold into amphipathic helical structure that allows them to interact directly with microbial membranes.

摘要

抗菌肽长期以来一直被视为对抗烧伤创面细菌感染的一种有前景的策略。在此,我们试图通过整合计算机模拟分析和体外实验,合理设计含有非天然氨基酸的小型抗菌肽。基于大量具有已知抗菌活性的九肽抗菌肽,严格建立并验证了预测性定量序列-活性模型。采用最佳的定量序列-活性模型预测器来指导肽群体的基因进化。在进化过程中,引入了许多具有所需物理化学性质的非天然氨基酸,从而产生了一个经基因进化改进的群体,从中成功鉴定出七个得分最高的肽候选物,它们含有1至3个非天然氨基酸,且结构多样,并使用体外药敏试验测定了它们对从感染烧伤创面分离出的两种耐抗生素菌株的抗菌效力。结果发现,七个受试肽中的四个(WL-Orn-LARKIV-NH2、ARKRWF-Dab-FL-NH2、KFI-Hag-IWR-Orn-R-NH2和YW-Hag-R-Cit-RF-Orn-N-NH2)比天然存在的最小广谱抗菌肽参考肽Bac2A更有效。分子动力学模拟表明,设计的肽可以折叠成两亲性螺旋结构,使其能够直接与微生物膜相互作用。

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