Max Planck Institute for Polymer Research, Ackermannweg 10, 55128, Mainz, Germany.
Institute of Inorganic Chemistry I, Ulm University, Albert-Einstein-Allee 11, 89081, Ulm, Germany.
Angew Chem Int Ed Engl. 2021 Jun 14;60(25):13757-13777. doi: 10.1002/anie.202012034. Epub 2021 Feb 26.
Site-selective protein functionalization serves as an invaluable tool for investigating protein structures and functions in complicated cellular environments and accomplishing semi-synthetic protein conjugates such as traceable therapeutics with improved features. Dual functionalization of proteins allows the incorporation of two different types of functionalities at distinct location(s), which greatly expands the features of native proteins. The attachment and crosstalk of a fluorescence donor and an acceptor dye provides fundamental insights into the folding and structural changes of proteins upon ligand binding in their native cellular environments. Moreover, the combination of drug molecules with different modes of action, imaging agents or stabilizing polymers provides new avenues to design precision protein therapeutics in a reproducible and well-characterizable fashion. This review aims to give a timely overview of the recent advancements and a future perspective of this relatively new research area. First, the chemical toolbox for dual functionalization of proteins is discussed and compared. The strengths and limitations of each strategy are summarized in order to enable readers to select the most appropriate method for their envisaged applications. Thereafter, representative applications of these dual-modified protein bioconjugates benefiting from the synergistic/additive properties of the two synthetic moieties are highlighted.
位点选择性蛋白质功能化是一种非常有价值的工具,可用于研究复杂细胞环境中的蛋白质结构和功能,并完成半合成蛋白质缀合物,如具有改进特性的可追踪治疗剂。蛋白质的双重功能化允许在不同位置(多个位置)掺入两种不同类型的功能,这极大地扩展了天然蛋白质的特性。荧光供体和受体染料的附着和串扰为在天然细胞环境中配体结合时蛋白质的折叠和结构变化提供了基本的见解。此外,将具有不同作用模式的药物分子、成像剂或稳定聚合物结合起来,为设计可重复且可充分表征的精确蛋白质治疗剂提供了新途径。本文旨在及时概述这一相对较新的研究领域的最新进展和未来展望。首先,讨论并比较了蛋白质双重功能化的化学工具箱。总结了每种策略的优缺点,以便读者能够为预期的应用选择最合适的方法。此后,突出了这些双重修饰的蛋白质生物缀合物的代表性应用,这些应用得益于两种合成部分的协同/附加特性。