Department of Chemical and Structural Biology, The Weizmann Institute of Science, Rehovot, 7610001, Israel.
Department of Immunology, The Weizmann Institute of Science, Rehovot, 7610001, Israel.
J Am Chem Soc. 2021 Dec 8;143(48):20095-20108. doi: 10.1021/jacs.1c06167. Epub 2021 Nov 24.
Chemical modifications of native proteins can affect their stability, activity, interactions, localization, and more. However, there are few nongenetic methods for the installation of chemical modifications at a specific protein site in cells. Here we report a covalent ligand directed release (CoLDR) site-specific labeling strategy, which enables the installation of a variety of functional tags on a target protein while releasing the directing ligand. Using this approach, we were able to label various proteins such as BTK, K-Ras, and SARS-CoV-2 PL with different tags. For BTK we have shown selective labeling in cells of both alkyne and fluorophores tags. Protein labeling by traditional affinity methods often inhibits protein activity since the directing ligand permanently occupies the target binding pocket. We have shown that using CoLDR chemistry, modification of BTK by these probes in cells preserves its activity. We demonstrated several applications for this approach including determining the half-life of BTK in its native environment with minimal perturbation, as well as quantification of BTK degradation by a noncovalent proteolysis targeting chimera (PROTAC) by in-gel fluorescence. Using an environment-sensitive "turn-on" fluorescent probe, we were able to monitor ligand binding to the active site of BTK. Finally, we have demonstrated efficient CoLDR-based BTK PROTACs (DC < 100 nM), which installed a CRBN binder onto BTK. This approach joins very few available labeling strategies that maintain the target protein activity and thus makes an important addition to the toolbox of chemical biology.
天然蛋白质的化学修饰可以影响其稳定性、活性、相互作用、定位等。然而,在细胞内特定蛋白质位点安装化学修饰的非遗传方法很少。在这里,我们报告了一种共价配体定向释放(CoLDR)的定点标记策略,该策略能够在目标蛋白上安装各种功能标签,同时释放导向配体。使用这种方法,我们能够对 BTK、K-Ras 和 SARS-CoV-2 PL 等各种蛋白质进行标记,带有不同的标签。对于 BTK,我们已经证明了炔烃和荧光团标签在细胞中的选择性标记。由于导向配体永久占据靶结合口袋,传统的亲和方法对蛋白质的标记通常会抑制其活性。我们已经表明,使用 CoLDR 化学,这些探针在细胞中对 BTK 的修饰可以保持其活性。我们展示了这种方法的几种应用,包括在最小干扰的情况下确定 BTK 在其天然环境中的半衰期,以及通过凝胶荧光法定量非共价蛋白酶体靶向嵌合体(PROTAC)对 BTK 的降解。使用环境敏感的“开启”荧光探针,我们能够监测配体与 BTK 的活性位点结合。最后,我们展示了高效的基于 CoLDR 的 BTK PROTACs(DC < 100 nM),它们将 CRBN 结合物安装到 BTK 上。这种方法加入了很少的可用标记策略,这些策略保持了靶蛋白的活性,因此是化学生物学工具箱的重要补充。