Department of Bioproducts and Biosystems, School of Chemical Engineering, Aalto University, P.O. Box 16100, 02150, Espoo, Finland.
Chembiochem. 2024 Jan 2;25(1):e202300600. doi: 10.1002/cbic.202300600. Epub 2023 Nov 15.
Manipulating protein architectures beyond genetic control has attracted widespread attention. Catcher/Tag systems enable highly specific conjugation of proteins in vivo and in vitro via an isopeptide-bond. They provide efficient, robust, and irreversible strategies for protein conjugation and are simple yet powerful tools for a variety of applications in enzyme industry, vaccines, biomaterials, and cellular applications. Here we summarize recent development of the Catcher/Tag toolbox with a particular emphasis on the design of Catcher/Tag pairs targeted for specific applications. We cover the current limitations of the Catcher/Tag systems and discuss the pH sensitivity of the reactions. Finally, we conclude some of the future directions in the development of this versatile protein conjugation method and envision that improved control over inducing the ligation reaction will further broaden the range of applications.
操纵超越遗传控制的蛋白质结构引起了广泛关注。Catcher/Tag 系统通过异肽键实现了蛋白质在体内和体外的高度特异性缀合。它们为蛋白质缀合提供了高效、稳健和不可逆的策略,并且是酶工业、疫苗、生物材料和细胞应用等各种应用的简单而强大的工具。在这里,我们总结了 Catcher/Tag 工具包的最新发展,特别强调了针对特定应用的 Catcher/Tag 对的设计。我们涵盖了 Catcher/Tag 系统的当前限制,并讨论了反应的 pH 敏感性。最后,我们总结了这种多功能蛋白质偶联方法的未来发展方向,并设想对诱导连接反应的控制的改善将进一步扩大其应用范围。