Xu Lujuan, Silva Maria J S A, Gois Pedro M P, Kuan Seah Ling, Weil Tanja
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.
Chem Sci. 2021 Sep 9;12(40):13321-13330. doi: 10.1039/d1sc03250j. eCollection 2021 Oct 20.
The development of bioconjugation chemistry has enabled the combination of various synthetic functionalities to proteins, giving rise to new classes of protein conjugates with functions well beyond what Nature can provide. Despite the progress in bioconjugation chemistry, there are no reagents developed to date where the reactivity can be tuned in a user-defined fashion to address different amino acid residues in proteins. Here, we report that 2-chloromethyl acryl reagents can serve as a simple yet versatile platform for selective protein modification at cysteine or disulfide sites by tuning their inherent electronic properties through the amide or ester linkage. Specifically, the 2-chloromethyl derivatives (acrylamide or acrylate) can be obtained a simple and easily implemented one-pot reaction based on the coupling reaction between commercially available starting materials with different end-group functionalities (amino group or hydroxyl group). 2-Chloromethyl acrylamide reagents with an amide linkage favor selective modification at the cysteine site with fast reaction kinetics and near quantitative conversations. In contrast, 2-chloromethyl acrylate reagents bearing an ester linkage can undergo two successive Michael reactions, allowing the selective modification of disulfides bonds with high labeling efficiency and good conjugate stability.
生物共轭化学的发展使得各种合成功能能够与蛋白质相结合,从而产生了新型的蛋白质共轭物,其功能远远超出了自然界所能提供的范围。尽管生物共轭化学取得了进展,但迄今为止尚未开发出能以用户定义的方式调节反应活性以靶向蛋白质中不同氨基酸残基的试剂。在此,我们报告2-氯甲基丙烯酸酯试剂可作为一个简单而通用的平台,通过酰胺或酯键调节其固有电子性质,实现对半胱氨酸或二硫键位点的选择性蛋白质修饰。具体而言,2-氯甲基衍生物(丙烯酰胺或丙烯酸酯)可通过基于具有不同端基官能团(氨基或羟基)的市售起始原料之间的偶联反应,通过简单且易于实施的一锅法反应获得。具有酰胺键的2-氯甲基丙烯酰胺试剂有利于对半胱氨酸位点进行选择性修饰,反应动力学快且转化率接近定量。相比之下,带有酯键的2-氯甲基丙烯酸酯试剂可进行两个连续的迈克尔反应,从而实现对二硫键的选择性修饰,标记效率高且共轭物稳定性良好。