Faculty of Chemistry, University of Havana, Zapata y G, Havana, 10400, Cuba.
ChemMedChem. 2020 Jul 3;15(13):1111-1112. doi: 10.1002/cmdc.202000261. Epub 2020 Jun 15.
Among the many methods available for accessing conformationally diverse cyclic peptides, the derivatization of macrocyclic iminopeptides has remained notably underexplored. Now, a relevant complexity-generating method expands the repertoire of synthetic strategies exploiting the reactivity of an imino bond embedded in the cyclic peptide skeleton. Here we highlight a recent report describing the on-resin construction of a new family of macrocyclic peptide/natural product-inspired hybrids, namely "PepNats", by derivatization of cyclic iminopeptides through 1,3-cycloaddition reactions. A proof-of-concept with PepNats bearing peptide sequences that mimic protein hot loops demonstrated the potential of this strategy to create novel macrocyclic peptide ligands capable of modulating protein-protein interactions.
在获得构象多样的环状肽的众多方法中,衍生大环亚氨基肽的方法仍然明显研究不足。现在,一种相关的产生复杂性的方法扩展了利用环状肽骨架中嵌入的亚氨基键的反应性的合成策略的范围。在这里,我们重点介绍最近的一篇报道,该报道描述了通过 1,3-环加成反应对环状亚氨基肽进行衍生化,在树脂上构建新型大环肽/天然产物启发型杂合体“PepNats”的新方法。具有模拟蛋白质热点环的肽序列的 PepNats 的概念验证证明了该策略用于创建能够调节蛋白质-蛋白质相互作用的新型大环肽配体的潜力。