Institute of Animal Nutrition , Northeast Agricultural University , Harbin , Heilongjiang 150030 , P. R. China.
J Med Chem. 2019 Aug 8;62(15):6941-6957. doi: 10.1021/acs.jmedchem.9b00288. Epub 2019 Jul 18.
There has recently been great concern regarding antibiotics due to potential drug resistance and the impact of antibiotics on the environment. Antimicrobial peptides are believed to have potential as novel antimicrobial agents to address the problems of antibiotics. Herein, we report a set of Trp-rich dodecapeptides derived from PMAP-36 that are based on the peptide folding principle and the amino acid characteristics. An effective peptide design template, (WXYX), where X represents Arg or Lys and Y represents hydrophobic or neutral amino acid, was summarized with the distribution of Trp at H-bond formation sites along the α-helical structure. The template peptide (3W-2), with low amphipathicity, displayed strong antimicrobial activity against laboratory strains and clinical isolates while showing no cytotoxicity. Furthermore, was able to suppress the emergence of antimicrobial resistance. Membrane permeabilization assays and microscope observations revealed the potent membrane-disruptive mechanism of . Overall, this study diminishes the randomness in peptide design and provides a strategy for generating effective antibiotic alternatives to overcome antibiotic resistance.
最近,人们对抗生素的潜在耐药性和抗生素对环境的影响表示了极大的关注。抗菌肽被认为具有作为新型抗菌剂的潜力,可以解决抗生素的问题。在此,我们报告了一组基于 PMAP-36 的富含色氨酸的十二肽,这些肽基于肽折叠原理和氨基酸特性。总结了一个有效的肽设计模板(WXYX),其中 X 代表 Arg 或 Lys,Y 代表疏水或中性氨基酸,其分布在沿 α-螺旋结构形成氢键的位置上有 Trp。模板肽 (3W-2)具有低两亲性,对实验室菌株和临床分离株表现出强烈的抗菌活性,同时没有细胞毒性。此外, 能够抑制抗菌耐药性的出现。膜通透性测定和显微镜观察揭示了 的强大的膜破坏机制。总的来说,这项研究减少了肽设计的随机性,并为生成有效的抗生素替代品以克服抗生素耐药性提供了一种策略。