Moreira Bernardo Pereira, Armstrong Tom, Batista Izabella Cristina Andrade, Clemente Tavares Naiara, Pires Camilla Valente, de Moraes Mourão Marina, Falcone Franco H, Dekker Lodewijk V
Biomedizinisches Forschungszentrum Seltersberg, Institut für Parasitologie, Justus-Liebig-Universität Gießen, 35392 Gießen, Germany.
Instituto de Pesquisas René Rachou, Fundação Oswaldo Cruz-FIOCRUZ, Belo Horizonte 30190-002, Minas Gerais, Brazil.
ACS Omega. 2020 Apr 16;5(16):9064-9070. doi: 10.1021/acsomega.9b03344. eCollection 2020 Apr 28.
The screening of compound libraries to identify small-molecule modulators of specific biological targets is crucial in the process for the discovery of novel therapeutics and molecular probes. Considering the need for simple single-tool assay technologies with which one could monitor "all" kinases, we developed a fluorescence polarization (FP)-based assay to monitor the binding capabilities of protein kinases to ATP. We used BODIPY ATP-y-S as a probe to measure the shift in the polarization of a light beam when passed through the sample. We were able to optimize the assay using commercial Protein Kinase A (PKA) and H7 efficiently inhibited the binding of the probe when added to the reaction. Furthermore, we were able to employ the assay in a high-throughput fashion and validate the screening of a set of small molecules predicted to dock into the ATP-binding site of PKA. This will be useful to screen larger libraries of compounds that may target protein kinases by blocking ATP binding.
在新型治疗药物和分子探针的发现过程中,筛选化合物库以识别特定生物靶点的小分子调节剂至关重要。考虑到需要一种简单的单工具检测技术来监测“所有”激酶,我们开发了一种基于荧光偏振(FP)的检测方法来监测蛋白激酶与ATP的结合能力。我们使用BODIPY ATP-γ-S作为探针,测量光束通过样品时偏振的变化。我们能够使用商业蛋白激酶A(PKA)优化该检测方法,并且当加入反应体系时,H7能有效抑制探针的结合。此外,我们能够以高通量方式应用该检测方法,并验证了对一组预测可对接至PKA的ATP结合位点的小分子的筛选。这将有助于筛选可能通过阻断ATP结合来靶向蛋白激酶的更大化合物库。