de Graaf Albert J, Kooijman Marlous, Hennink Wim E, Mastrobattista Enrico
Department of Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences, Faculty of Science, Utrecht University, P.O. Box 80.082, 3508 TB Utrecht, The Netherlands.
Bioconjug Chem. 2009 Jul;20(7):1281-95. doi: 10.1021/bc800294a.
Over the years, several chemical reactions have been developed that enable the covalent conjugation of synthetic molecules to natural proteins. The resulting bioconjugates have become important tools in the study of natural proteins. Furthermore, they form a new class of protein-based pharmaceuticals and biomaterials. However, classical bioconjugation reactions to natural amino acids suffer from poor site-specificity. To overcome this problem, a variety of uniquely reactive non-natural amino acids have recently been designed. These can be incorporated into proteins by specifically engineered bacterial strains. Such reactive non-natural amino acids create new possibilities for bio-orthogonal conjugation to proteins. This review first gives an overview of the various methods for site-specific introduction of non-natural amino acids into proteins. Both semisynthetic and entirely recombinant methods are addressed. Then, a detailed description is given of the reactive non-natural amino acids that have already been recombinantly introduced into proteins. The bio-orthogonal reactions that can be used for conjugation to these reactive non-natural amino acids are also discussed. These include the alkyne/azide 'click' reaction, carbonyl condensations, Michael-type additions, and Mizoroki-Heck substitutions.
多年来,人们已经开发出几种化学反应,能够使合成分子与天然蛋白质进行共价结合。由此产生的生物共轭物已成为研究天然蛋白质的重要工具。此外,它们构成了一类新型的基于蛋白质的药物和生物材料。然而,与天然氨基酸的经典生物共轭反应存在位点特异性差的问题。为了克服这个问题,最近设计了多种具有独特反应性的非天然氨基酸。这些氨基酸可以通过经过特殊工程改造的细菌菌株整合到蛋白质中。这种具有反应性的非天然氨基酸为与蛋白质进行生物正交共轭创造了新的可能性。本综述首先概述了将非天然氨基酸位点特异性引入蛋白质的各种方法。文中讨论了半合成方法和完全重组方法。然后,详细描述了已经通过重组方式引入蛋白质中的具有反应性的非天然氨基酸。还讨论了可用于与这些具有反应性的非天然氨基酸进行共轭的生物正交反应。这些反应包括炔烃/叠氮化物“点击”反应、羰基缩合反应、迈克尔型加成反应和 Mizoroki-Heck 取代反应。