计算机科学
工作流程
极光激酶
重新调整用途
计算生物学
药物发现
细胞
纳米技术
化学
组合化学
生物
材料科学
生物化学
细胞周期
数据库
生态学
作者
Kelly A. Teske,Wenji Su,Cesear Corona,Jing Wen,Jason Deng,Yan Ping,Zaihong Zhang,Qi Zhang,Jennifer Wilkinson,Michael Beck,Kendra R. Nealey,James D. Vasta,Mei Cong,Poncho Meisenheimer,Letian Kuai,Matthew B. Robers
标识
DOI:10.1016/j.chembiol.2023.06.019
摘要
DNA-encoded libraries (DELs) provide unmatched chemical diversity and starting points for novel drug modalities. Here, we describe a workflow that exploits the bifunctional attributes of DEL ligands as a platform to generate BRET probes for live cell target engagement studies. To establish proof of concept, we performed a DEL screen using aurora kinase A and successfully converted aurora DEL ligands as cell-active BRET probes. Aurora BRET probes enabled the validation and stratification of the chemical series identified from primary selection data. Furthermore, we have evaluated the effective repurposing of pre-existing DEL screen data to find suitable leads for BRET probe development. Our findings support the use of DEL workflows as an engine to create cell-active BRET probes independent of structure or compound SAR. The combination of DEL and BRET technology accelerates hit-to-lead studies in a live cell setting.
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