Department of Chemistry, Rice University , Houston, Texas 77005, United States.
J Am Chem Soc. 2016 Jun 22;138(24):7472-5. doi: 10.1021/jacs.6b03390. Epub 2016 Jun 8.
Chemical modification of proteins and peptides represents a challenge of reaction design as well as an important biological tool. In contrast to side-chain modification, synthetic methods to alter backbone structure are extremely limited. In this communication, copper-mediated backbone N-alkenylation or N-arylation of peptides and proteins by direct modification of natural sequences is described. Histidine residues direct oxidative coupling of boronic acids at the backbone NH of a neighboring amino acid. The mild reaction conditions in common physiological buffers, at ambient temperature, are compatible with proteins and biological systems. This simple reaction demonstrates the potential for directed reactions in complex systems to allow modification of N-H bonds that directly affect polypeptide structure, stability, and function.
蛋白质和肽的化学修饰既是反应设计的挑战,也是重要的生物学工具。与侧链修饰相比,改变骨架结构的合成方法极为有限。在本通讯中,描述了通过直接修饰天然序列,用铜介导的肽和蛋白质的骨架 N-烯丙基化或 N-芳基化。组氨酸残基在邻近氨基酸的骨架 NH 上引导硼酸的氧化偶联。在环境温度下的常见生理缓冲液中的温和反应条件与蛋白质和生物系统兼容。这个简单的反应展示了在复杂体系中定向反应的潜力,使直接影响多肽结构、稳定性和功能的 N-H 键的修饰成为可能。