Macrocyclization of acyclic compounds is a powerful strategy for improving inhibitor potency and selectivity. Here we have optimized 2-aminopyrimidine-based macrocycles to use these compounds as chemical tools for the ephrin kinase family. Starting with a promiscuous macrocyclic inhibitor, 6, we performed a structure-guided activity relationship and selectivity study using a panel of over 100 kinases. The crystal structure of EPHA2 in complex with the developed macrocycle 23 provided a basis for further optimization by specifically targeting the back pocket, resulting in compound 55, a potent inhibitor of EPHA2/A4 and GAK. Subsequent front-pocket derivatization resulted in an interesting in cellulo selectivity profile, favoring EPHA4 over the other ephrin receptor kinase family members. The dual EPHA2/A4 and GAK inhibitor 55 prevented dengue virus infection of Huh7 liver cells. However, further investigations are needed to determine whether this was a compound-specific effect or target-related.
Back-Pocket Optimization of 2-Aminopyrimidine-Based Macrocycles Leads to Potent EPHA2/GAK Kinase Inhibitors.
2-氨基嘧啶基大环化合物的后口袋优化可得到强效的EPHA2/GAK激酶抑制剂
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作者:Gerninghaus Joshua, Zhubi Rezart, Krämer Andreas, Karim Marwah, Tran Do Hoang Nhu, Joerger Andreas C, Schreiber Christian, Berger Lena M, Berger Benedict-Tilman, Ehret Theresa A L, Elson Lewis, Lenz Christopher, Saxena Krishna, Müller Susanne, Einav Shirit, Knapp Stefan, Hanke Thomas
| 期刊: | Journal of Medicinal Chemistry | 影响因子: | 6.800 |
| 时间: | 2024 | 起止号: | 2024 Aug 8; 67(15):12534-12552 |
| doi: | 10.1021/acs.jmedchem.4c00411 | 靶点: | EPHA2 |
| 研究方向: | 信号转导 | ||
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