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Scaffold-Hopping and Structure-Based Discovery of Potent, Selective, And Brain Penetrant N‑(1H‑Pyrazol-3-yl)pyridin-2-amine Inhibitors of Dual Leucine Zipper Kinase (DLK, MAP3K12)

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Figshare2016-02-12 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Scaffold_Hopping_and_Structure_Based_Discovery_of_Potent_Selective_And_Brain_Penetrant_i_N_i_1_i_H_i_Pyrazol_3_yl_pyridin_2_amine_Inhibitors_of_Dual_Leucine_Zipper_Kinase_DLK_MAP3K12_/2118673
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Recent data suggest that inhibition of dual leucine zipper kinase (DLK, MAP3K12) has therapeutic potential for treatment of a number of indications ranging from acute neuronal injury to chronic neurodegenerative disease. Thus, high demand exists for selective small molecule DLK inhibitors with favorable drug-like properties and good CNS penetration. Herein we describe a shape-based scaffold hopping approach to convert pyrimidine 1 to a pyrazole core with improved physicochemical properties. We also present the first crystal structures of DLK. By utilizing a combination of property and structure-based design, we identified inhibitor 11, a potent, selective, and brain-penetrant inhibitor of DLK with activity in an in vivo nerve injury model.
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2016-02-12
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