自磷酸化
原癌基因酪氨酸蛋白激酶Src
激酶
化学
共价键
生物化学
细胞生物学
生物
蛋白激酶A
有机化学
作者
Huimin Zhang,Dounan Xu,Hongchan Huang,Hao Jiang,Linghao Hu,Liping Liu,Ge Sun,Jing Gao,Yuan‐Qing Li,Cuicui Xia,Shijie Chen,Hu Zhou,Xiangqian Kong,Mingliang Wang,Cheng Luo
标识
DOI:10.1021/acschembio.4c00048
摘要
Nonreceptor tyrosine kinase c-Src plays a crucial role in cell signaling and contributes to tumor progression. However, the development of selective c-Src inhibitors turns out to be challenging. In our previous study, we performed posttranslational modification-inspired drug design (PTMI-DD) to provide a plausible way for designing selective kinase inhibitors. In this study, after identifying a unique pocket comprising a less conserved cysteine and an autophosphorylation site in c-Src as well as a promiscuous covalent inhibitor, chemical optimization was performed to obtain (R)-LW-Srci-8 with nearly 75-fold improved potency (IC50 = 35.83 ± 7.21 nM). Crystallographic studies revealed the critical C-F···C═O interactions that may contribute to tight binding. The kinact and Ki values validated the improved binding affinity and decreased warhead reactivity of (R)-LW-Srci-8 for c-Src. Notably, in vitro tyrosine kinase profiling and cellular activity-based protein profiling (ABPP) cooperatively indicated a specific inhibition of c-Src by (R)-LW-Srci-8. Intriguingly, (R)-LW-Srci-8 preferentially binds to inactive c-Src with unphosphorylated Y419 both in vitro and in cells, subsequently disrupting the autophosphorylation. Collectively, our study demonstrated the feasibility of developing selective kinase inhibitors by cotargeting a nucleophilic residue and a posttranslational modification site and providing a chemical probe for c-Src functional studies.
科研通智能强力驱动
Strongly Powered by AbleSci AI