Zheng Mengmeng, Haeffner Fredrik, Gao Jianmin
Department of Chemistry, Merkert Chemistry Center, Boston College Chestnut Hill MA 02467 USA
Chem Sci. 2022 Jun 30;13(28):8349-8354. doi: 10.1039/d2sc03241d. eCollection 2022 Jul 20.
Phage display, an ingenious invention for evaluating peptide libraries, has been limited to natural peptides that are ribosomally assembled with proteinogenic amino acids. Recently, there has been growing interest in chemically modifying phage libraries to create nonnatural cyclic and multicyclic peptides, which are appealing for use as inhibitors of protein-protein interactions. While earlier reports largely focused on side-chain side-chain cyclization, we report herein a novel strategy for creating backbone-side chain cyclized peptide libraries on phage. Our strategy capitalizes on the unique reactivity of an N-terminal cysteine (NCys) with 2-cyanobenzothiazole (CBT) which, in conjugation with another thiol-reactive group, can elicit rapid cyclization between an NCys and an internal cysteine. The resulting library was screened against two model proteins, namely Keap1 and Sortase A. The screening readily revealed potent inhibitors for both proteins with certain Keap1 ligands reaching low nanomolar potency. The backbone-side chain cyclization strategy described herein presents a significant addition to the toolkit of creating nonnatural macrocyclic peptide libraries for phage display.
噬菌体展示是一种评估肽库的巧妙发明,但一直局限于由蛋白质氨基酸核糖体组装而成的天然肽。最近,人们越来越有兴趣对噬菌体库进行化学修饰,以创建非天然的环状和多环肽,这些肽作为蛋白质-蛋白质相互作用的抑制剂很有吸引力。虽然早期的报道主要集中在侧链-侧链环化上,但我们在此报告了一种在噬菌体上创建主链-侧链环化肽库的新策略。我们的策略利用了N端半胱氨酸(NCys)与2-氰基苯并噻唑(CBT)的独特反应性,CBT与另一个硫醇反应性基团结合,可以引发NCys与内部半胱氨酸之间的快速环化。针对两种模型蛋白,即Keap1和分选酶A对所得文库进行了筛选。筛选很容易就发现了这两种蛋白的有效抑制剂,某些Keap1配体的效力达到了低纳摩尔水平。本文所述的主链-侧链环化策略为创建用于噬菌体展示的非天然大环肽库的工具集增添了重要内容。