Organische und Bioorganische Chemie, Fakultät für Chemie, Universität Bielefeld, Universitätsstraße 25, 33615, Bielefeld, Germany.
Chemistry. 2020 Apr 24;26(24):5328-5340. doi: 10.1002/chem.201903756. Epub 2020 Mar 2.
Pd-mediated reactions have emerged as a powerful tool for the site-selective and bioorthogonal late-stage diversification of amino acids, peptides and related compounds. Indole moieties of tryptophan derivatives are susceptible to C H-activation, whereas halogenated aromatic amino acids such as halophenylalanines or halotryptophans provide a broad spectrum of different functionalisations. The compatibility of transition-metal-catalysed cross-couplings with functional groups in peptides, other biologically active compounds and even proteins has been demonstrated. This Review primarily compiles the application of different cross-coupling reactions to modify halotryptophans, halotryptophan containing peptides or halogenated, biologically active compounds derived from tryptophan. Modern approaches use regio- and stereoselective biocatalytic strategies to generate halotryptophans and derivatives on a preparative scale. The combination of bio- and chemocatalysis in cascade reactions is given by the biocompatibility and bioorthogonality of Pd-mediated reactions.
Pd 介导的反应已成为一种强大的工具,可用于对氨基酸、肽和相关化合物进行选择性和生物正交的后期多样化。色氨酸衍生物的吲哚部分易发生 C-H 活化,而卤代芳香族氨基酸(如卤代苯丙氨酸或卤代色氨酸)则提供了广泛的不同官能化。已经证明了过渡金属催化的交叉偶联与肽、其他生物活性化合物甚至蛋白质中的官能团的兼容性。本文主要综述了不同交叉偶联反应在修饰卤代色氨酸、含卤代色氨酸的肽或衍生自色氨酸的卤代生物活性化合物方面的应用。现代方法使用区域和立体选择性生物催化策略在制备规模上生成卤代色氨酸和衍生物。生物催化和化学催化在级联反应中的结合是由 Pd 介导的反应的生物相容性和生物正交性决定的。