泛素连接酶
连接器
计算生物学
泛素
工具箱
DNA连接酶
蛋白质降解
药物发现
细胞生物学
生物
化学
计算机科学
生物信息学
生物化学
DNA
基因
操作系统
程序设计语言
作者
Kedra Cyrus,Marie Wehenkel,Eunyoung Choi,Hyeong‐jun Han,Hyosung Lee,Hollie I. Swanson,Kyungbo Kim
摘要
Conventional genetic approaches have provided a powerful tool in the study of proteins. However, these techniques often preclude selective manipulation of temporal and spatial protein functions, which is crucial for the investigation of dynamic cellular processes. To overcome these limitations, a small molecule-based novel technology termed "PROteolysis TArgeting ChimeraS (PROTACs)" has been developed, targeting proteins for degradation at the post-translational level. Despite the promising potential of PROTACs to serve as molecular probes of complex signaling pathways, their design has not been generalized for broad application. Here, we present the first generalized approach for PROTAC design by fine-tuning the distance between the two participating partner proteins, the E3 ubiquitin ligase and the target protein. As such, we took a chemical approach to create estrogen receptor (ER)-α targeting PROTACs with varying linker lengths and the loss of the ER in cultured cells was monitored via western blot and fluorometric analyses. We found a significant effect of chain length on PROTAC efficacy, and, in this case, the optimum distance between the E3 recognition motif and the ligand was a 16 atom chain length. The information gathered from this experiment may offer a generalizable PROTAC design strategy to further the expansion of the PROTAC toolbox, opening new possibilities for the broad application of the PROTAC strategy in the study of multiple signaling pathways.
科研通智能强力驱动
Strongly Powered by AbleSci AI