Istituto di Biostrutture e Bioimmagini, CNR, Napoli, Italy.
Org Biomol Chem. 2018 Jan 31;16(5):787-795. doi: 10.1039/c7ob02815f.
Molecular tools to stabilize the β-hairpin conformation are needed as β-hairpin peptides are useful molecules for pharmaceutical, biological and materials applications. We explored the use of a "triazole bridge", a covalent link between two β-hairpin strands obtained through Cu-catalyzed alkyne-azide cycloaddition, combined with an aromatic-aromatic interaction. Highly conformationally stable peptides were identified by NMR screening of a small collection of cyclic peptides based on the Trpzip2 scaffold. The characteristic Trp-Trp interaction of Trpzip2 was replaced by a diagonal triazole bridge of variable length. NMR and CD analyses showed that triazole and indole rings could favorably interact to stabilize a β-hairpin conformation. The conformational stabilization depends on the length of the triazole bridge and the reciprocal position between the aromatic rings. Combining aromatic interactions and the covalent inter-strand triazole bridge is a useful strategy to obtain peptides with a high β-hairpin content.
需要分子工具来稳定β-发夹构象,因为β-发夹肽在药物、生物和材料应用中是有用的分子。我们探索了使用“三唑桥”,这是一种通过铜催化的炔烃-叠氮化物环加成获得的两个β-发夹链之间的共价连接,结合了芳香-芳香相互作用。通过对基于 Trpzip2 支架的一小部分环状肽的 NMR 筛选,确定了高度构象稳定的肽。Trpzip2 的特征色氨酸-色氨酸相互作用被可变长度的对角三唑桥取代。NMR 和 CD 分析表明,三唑环和吲哚环可以有利地相互作用以稳定β-发夹构象。构象稳定取决于三唑桥的长度和芳环的相互位置。结合芳香相互作用和共价链间三唑桥是获得具有高β-发夹含量的肽的有用策略。