Saarbach J, Lindberg E, Folliet S, Georgeon S, Hantschel O, Winssinger N
Faculty of Science , Department of Organic Chemistry , NCCR Chemical Biology , University of Geneva , 30 quai Ernest Ansermet , Geneva , Switzerland . Email:
Swiss Institute for Experimental Cancer Research (ISREC) , NCCR Chemical Biology , School of Life Sciences , École Polytechnique Fédérale de Lausanne (EPFL) , CH-1015 Lausanne , Switzerland.
Chem Sci. 2017 Jul 1;8(7):5119-5125. doi: 10.1039/c7sc01416c. Epub 2017 May 24.
Protein kinases are quintessential regulators of cellular function. Numerous pathologies are intimately linked to the dysregulated activity of a particular protein kinase. Herein we report a technology based on a proximity-induced chemical transformation that enables the detection and imaging of specific kinases. Using two probes that target the nucleotide-binding site and substrate binding site of a target kinase respectively, the reagents appended on the probes are brought within reactive distance thereby enabling the chemical transformation. The reaction used for sensing is a ruthenium-photocatalyzed reduction of a pyridinium immolative linker, which uncages a fluorophore (rhodamine). We demonstrate that this technology can be used to discriminate between closely related kinases with a high signal to noise ratio. We further demonstrate that the technology operates within the complexity of a cellular context with a good correlation between the level of kinase activity and fluorescence output.
蛋白激酶是细胞功能的典型调节因子。许多疾病都与特定蛋白激酶的活性失调密切相关。在此,我们报告一种基于邻近诱导化学转化的技术,该技术能够对特定激酶进行检测和成像。使用分别靶向目标激酶的核苷酸结合位点和底物结合位点的两种探针,连接在探针上的试剂被带到反应距离内,从而实现化学转化。用于传感的反应是钌光催化还原吡啶鎓牺牲连接体,该连接体可释放出一种荧光团(罗丹明)。我们证明,该技术可用于以高信噪比区分密切相关的激酶。我们进一步证明,该技术在细胞环境的复杂性中起作用,激酶活性水平与荧光输出之间具有良好的相关性。