State Key Laboratory of Coordination Chemistry, Jiangsu Key Laboratory of Advanced Organic Materials, Chemistry and Biomedicine Innovation Center (ChemBIC), School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, China.
Green Catalysis Center, College of Chemistry and Molecular Engineering, Zhengzhou University, Zhengzhou 450001, China.
J Am Chem Soc. 2023 Jul 12;145(27):14865-14873. doi: 10.1021/jacs.3c03840. Epub 2023 Jun 28.
The amidated peptides are an important class of biologically active compounds due to their unique biological properties and wide applications as potential peptide drugs and biomarkers. Despite the abundance of free amide motifs (Asn, Gln, and C-terminal amide) in native peptides, late-stage modification of the amide unit in naturally occurring peptides remains very rare because of the intrinsically weak nucleophilicity of amides and the interference of multiple competing nucleophilic residues, which generally lead to undesired side reactions. Herein, chemoselective arylation of amides in unprotected polypeptides has been developed under an air atmosphere to afford the -aryl amide peptides bearing various functional motifs. Its success relies on the combination of gold catalysis and silver salt to differentiate the relative inert amide among a collection of reactive nucleophilic amino acid residues (e.g., -NH, -OH, and -COOH), favoring the C-N bond coupling toward amides over other more nucleophilic groups. Experimental and DFT studies reveal a crucial role of the silver cation, which serves as a transient coordination mask of the more reactive reaction sites, overcoming the inherently low reactivity of amides. The excellent biocompatibility of this strategy has been applied to functionalize a wide range of peptide drugs and complex peptides. The application could be further extended to peptide labeling and peptide stapling.
酰胺肽是一类重要的具有生物活性的化合物,由于其独特的生物学性质和作为潜在的肽类药物和生物标志物的广泛应用。尽管天然肽中存在丰富的游离酰胺基序(Asn、Gln 和 C 末端酰胺),但由于酰胺的内在亲核性较弱,以及多个竞争亲核残基的干扰,天然存在的肽中酰胺单元的后期修饰仍然非常罕见,这通常会导致不期望的副反应。在此,在空气氛围下开发了未保护多肽中酰胺的选择性芳基化反应,以提供带有各种功能基序的 -芳基酰胺肽。它的成功依赖于金催化和银盐的结合,以区分反应性亲核氨基酸残基(例如 -NH、-OH 和 -COOH)中的相对惰性酰胺,有利于酰胺的 C-N 键偶联,而不是其他更亲核的基团。实验和 DFT 研究揭示了银阳离子的关键作用,它作为更具反应性的反应位点的瞬态配位掩蔽剂,克服了酰胺的固有低反应性。该策略具有出色的生物相容性,已应用于多种肽类药物和复杂肽类的功能化。该应用可以进一步扩展到肽标记和肽键合。