Department of Chemistry, University College London, 20, Gordon Street, London, WC1H 0AJ, UK.
The Swedish NMR Centre, Medicinaregatan 5, 40530, Gothenburg, Sweden.
Chemistry. 2019 Nov 18;25(64):14572-14582. doi: 10.1002/chem.201902814. Epub 2019 Oct 10.
Natural products that target lipid II, such as the lantibiotic nisin, are strategically important in the development of new antibacterial agents to combat the rise of antimicrobial resistance. Understanding the structural factors that govern the highly selective molecular recognition of lipid II by the N-terminal region of nisin, nisin(1-12), is a crucial step in exploiting the potential of such compounds. In order to elucidate the relationships between amino acid sequence and conformation of this bicyclic peptide fragment, we have used solid-phase peptide synthesis to prepare two novel analogues of nisin(1-12) in which the dehydro residues have been replaced. We have carried out an NMR ensemble analysis of one of these analogues and of the wild-type nisin(1-12) peptide in order to compare the conformations of these two bicyclic peptides. Our analysis has shown the effects of residue mutation on ring conformation. We have also demonstrated that the individual rings of nisin(1-12) are pre-organised to an extent for binding to the pyrophosphate group of lipid II, with a high degree of flexibility exhibited in the central amide bond joining the two rings.
天然产物如羊毛硫抗生素类尼生素,以脂类 II 为作用靶点,在开发新型抗菌药物以应对抗生素耐药性日益严重的问题上具有重要的战略意义。了解决定尼生素 N 端区域(尼生素 1-12)对脂类 II 进行高度选择性分子识别的结构因素,是充分利用此类化合物潜力的关键步骤。为了阐明该双环肽片段的氨基酸序列与构象之间的关系,我们使用固相肽合成技术制备了两种新型尼生素 1-12 类似物,其中已取代了脱氢残基。我们对其中一种类似物和野生型尼生素 1-12 肽进行了 NMR 整体分析,以比较这两种双环肽的构象。我们的分析表明了残基突变对环构象的影响。我们还证明了尼生素 1-12 的各个环在一定程度上预先组织起来,以与脂类 II 的焦磷酸基团结合,在连接两个环的中心酰胺键处表现出高度的灵活性。