Institute for Research in Biomedicine, Baldiri Reixac 10, 08028, Barcelona, Spain.
Department of Inorganic and Organic Chemistry, Organic Chemistry Section, University of Barcelona, Martí i Franquès 1-11, 08028, Barcelona, Spain.
Chemistry. 2018 Dec 20;24(72):19250-19257. doi: 10.1002/chem.201803899. Epub 2018 Dec 4.
The chemical synthesis of a bicycle inspired by the natural lasso peptide sungsanpin using a combination of solid-phase and in-solution chemistries is described. The bicyclic-derived topoisomer was designed by introducing a covalent linkage between the ring and the loop, which allowed the tying of these two parts of the peptide, rendering the bicyclic structure. Several structural techniques, such as MS fragmentation, ion-mobility and NMR spectroscopic analysis were used to characterize the bicycle. Ion-mobility spectroscopy studies revealed that it showed lasso-like behavior. Its 3D structure was predicted on the basis of the NMR restraints. In addition, the high proteolytic and thermal stability of the bicycle potentially make it a suitable scaffold for epitope grafting.
描述了一种受天然套索肽 sungsanpin 启发的自行车的化学合成,该合成采用了固相和溶液化学相结合的方法。通过在环和环之间引入共价键,设计了双环衍生的拓扑异构酶,从而将肽的这两个部分系紧,形成双环结构。采用 MS 碎裂、离子淌度和 NMR 光谱分析等多种结构技术对自行车进行了表征。离子淌度光谱研究表明,它表现出类似套索的行为。根据 NMR 约束条件预测了它的 3D 结构。此外,自行车具有较高的蛋白水解和热稳定性,使其有可能成为表位嫁接的合适支架。