Department of Chemistry and Applied Biosciences, ETH Zurich, 8093, Zurich, Switzerland.
Department of Molecular Biology, University of Salzburg, 5020, Salzburg, Austria.
Small. 2017 Oct;13(40). doi: 10.1002/smll.201701316. Epub 2017 Aug 11.
Specific interactions of peptides with lipid membranes are essential for cellular communication and constitute a central aspect of the innate host defense against pathogens. A computational method for generating innovative membrane-pore-forming peptides inspired by natural templates is presented. Peptide representation in terms of sequence- and topology-dependent hydrophobic moments is introduced. This design concept proves to be appropriate for the de novo generation of first-in-class membrane-active peptides with the anticipated mode of action. The designed peptides outperform the natural template in terms of their antibacterial activity. They form a kinked helical structure and self-assemble in the membrane by an entropy-driven mechanism to form dynamically growing pores that are dependent on the lipid composition. The results of this study demonstrate the unique potential of natural template-based peptide design for chemical biology and medicinal chemistry.
肽与脂质膜的特定相互作用对于细胞通讯至关重要,并且构成了先天宿主防御病原体的核心方面。本文提出了一种受天然模板启发生成创新的膜孔形成肽的计算方法。本文引入了基于序列和拓扑的疏水性矩的肽表示。该设计概念被证明适用于具有预期作用模式的一流膜活性肽的从头生成。在所研究的肽中,设计肽在抗菌活性方面优于天然模板。它们形成一个扭曲的螺旋结构,并通过熵驱动的机制在膜中自组装,形成依赖于脂质组成的动态增长的孔。这项研究的结果表明了基于天然模板的肽设计在化学生物学和药物化学方面的独特潜力。