Kim Ji-Sun, Jeong Ji-Ho, Kim Yongae
Department of Chemistry, Hankuk University of Foreign Studies, Yong-In 17035, Republic of Korea.
J Microbiol Biotechnol. 2018 Mar 28;28(3):381-390. doi: 10.4014/jmb.1711.11057.
We have previously derived a novel antimicrobial peptide, LPcin-YK3(YK3), based on lactophoricin and have successfully studied and reported on the relationship between its structure and function. In this study, antimicrobial peptides with improved antimicrobial activity, less cytotoxicity, and shorter length were devised and characterized on the basis of YK3, and named YK5, YK8, and YK11. The peptide design was based on a variety of knowledge, and a total of nine analog peptides consisted of one to three amino acid substitutions and C-terminal deletions. In detail, tryptophan substitution improved the membrane perturbation, lysine substitution increased the net charge, and excessive amphipathicity decreased. The analog peptides were examined for structural characteristics through spectroscopic analytical techniques, and antimicrobial susceptibility tests were used to confirm their activity and safety. We expect that these studies will provide a platform for systematic engineering of new antibiotic peptides and generate libraries of various antibiotic peptides.
我们之前基于乳铁蛋白衍生出一种新型抗菌肽LPcin-YK3(YK3),并成功研究并报道了其结构与功能之间的关系。在本研究中,基于YK3设计并表征了具有更高抗菌活性、更低细胞毒性和更短长度的抗菌肽,命名为YK5、YK8和YK11。肽的设计基于多种知识,总共九个类似肽由一到三个氨基酸取代和C端缺失组成。具体而言,色氨酸取代改善了膜扰动,赖氨酸取代增加了净电荷,过度的两亲性降低。通过光谱分析技术检查类似肽的结构特征,并使用抗菌药敏试验来确认其活性和安全性。我们期望这些研究将为新型抗生素肽的系统工程提供一个平台,并生成各种抗生素肽文库。