Vinogradov Alexander A, Pan Shih-Yu, Suga Hiroaki
Department of Chemistry, Graduate School of Science, The University of Tokyo, Bunkyo-ku, Tokyo 113-0033, Japan.
Department of Pharmacy and Pharmaceutical Sciences, Faculty of Science, National University of Singapore, Singapore 117544, Singapore.
J Am Chem Soc. 2025 Mar 5;147(9):7533-7544. doi: 10.1021/jacs.4c16525. Epub 2025 Feb 21.
α,β-dehydroalanine (ΔAla) is a uniquely reactive nonproteinogenic amino acid often employed for the late-stage functionalization of peptides, natural products (s), and proteins. The modification of ΔAla is a powerful method for the semisynthetic engineering of NPs and for post-translational protein mutagenesis. Numerous enabling ΔAla modification techniques have been developed over the years, but most state-of-the-art approaches furnish product mixtures detrimental in many applications. Here, we report a Pd(II)-mediated coupling reaction between aryl -methylimidodiacetic acid boronates and ΔAla-containing peptides and proteins which yields ΔzPhe coupling products with high selectivity. The coupling proceeds in water under ambient conditions (37 °C, <24 h) and without the exclusion of oxygen using fully unprotected substrates. The speed and high selectivity of the reaction is enabled by the use of ,'-ethylene-bis-threonine as a Pd(II) ligand. We utilize this chemistry to selectively functionalize a variety of oligopeptides, NP-like compounds, and intact proteins. Finally, we show that the coupling reaction can be readily adapted to modify in vitro translated peptides by devising a platform for the chemoribosomal synthesis of ΔzPhe-containing structures. Altogether, our chemistry provides a powerful tool for the selective late-stage functionalization of ΔAla in peptides and proteins.
α,β-脱氢丙氨酸(ΔAla)是一种具有独特反应活性的非蛋白质氨基酸,常用于肽、天然产物和蛋白质的后期功能化修饰。ΔAla的修饰是天然产物半合成工程和翻译后蛋白质诱变的一种强大方法。多年来已开发出许多可行的ΔAla修饰技术,但大多数最先进的方法都会产生在许多应用中有害的产物混合物。在此,我们报道了一种钯(II)介导的芳基 - 甲基亚氨基二乙酸硼酸酯与含ΔAla的肽和蛋白质之间的偶联反应,该反应能以高选择性生成ΔzPhe偶联产物。该偶联反应在水相中、环境条件下(37°C,<24小时)进行,且使用完全未保护的底物时无需排除氧气。反应的速度和高选择性得益于使用,'-乙烯 - 双 - 苏氨酸作为钯(II)配体。我们利用这种化学方法对多种寡肽、类天然产物化合物和完整蛋白质进行选择性功能化修饰。最后,我们通过设计一个用于含ΔzPhe结构的化学核糖体合成平台,证明了该偶联反应能够轻松适用于修饰体外翻译的肽。总之,我们的化学方法为肽和蛋白质中ΔAla的选择性后期功能化修饰提供了一个强大的工具。