Kinase inhibitors are effective cancer therapies, but resistance often limits clinical efficacy. Despite the cataloging of numerous resistance mutations, our understanding of kinase inhibitor resistance is still incomplete. Here, we comprehensively profiled the resistance of â¼3,500 Src tyrosine kinase mutants to four different ATP-competitive inhibitors. We found that ATP-competitive inhibitor resistance mutations are distributed throughout Src's catalytic domain. In addition to inhibitor contact residues, residues that participate in regulating Src's phosphotransferase activity were prone to the development of resistance. Unexpectedly, we found that a resistance-prone cluster of residues located on the top face of the N-terminal lobe of Src's catalytic domain contributes to autoinhibition by reducing catalytic domain dynamics, and mutations in this cluster led to resistance by lowering inhibitor affinity and promoting kinase hyperactivation. Together, our studies demonstrate how drug resistance profiling can be used to define potential resistance pathways and uncover new mechanisms of kinase regulation.
Profiling of drug resistance in Src kinase at scale uncovers a regulatory network coupling autoinhibition and catalytic domain dynamics.
大规模分析 Src 激酶的耐药性,揭示了一个将自身抑制和催化结构域动力学耦合起来的调控网络
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作者:Chakraborty Sujata, Ahler Ethan, Simon Jessica J, Fang Linglan, Potter Zachary E, Sitko Katherine A, Stephany Jason J, Guttman Miklos, Fowler Douglas M, Maly Dustin J
| 期刊: | Cell Chemical Biology | 影响因子: | 7.200 |
| 时间: | 2024 | 起止号: | 2024 Feb 15; 31(2):207-220 |
| doi: | 10.1016/j.chembiol.2023.08.005 | 研究方向: | 其它 |
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