化学
亮氨酸拉链
神经退行性变
调节器
激酶
蛋白激酶A
体外
神经元变性
药理学
生物化学
细胞生物学
计算生物学
神经科学
转录因子
生物
疾病
基因
医学
病理
作者
Snahel Patel,Frederick Cohen,Brian J. Dean,Kelly De La Torre,Gauri Deshmukh,Anthony A. Estrada,Arundhati Sengupta Ghosh,Paul Gibbons,Amy Gustafson,Malcolm P. Huestis,Claire E. Le Pichon,Han Lin,Wendy Liu,Xingrong Liu,Yichin Liu,Cuong Q. Ly,Joseph P. Lyssikatos,Changyou Ma,Kimberly Scearce‐Levie,Young G. Shin
摘要
Dual leucine zipper kinase (DLK, MAP3K12) was recently identified as an essential regulator of neuronal degeneration in multiple contexts. Here we describe the generation of potent and selective DLK inhibitors starting from a high-throughput screening hit. Using proposed hinge-binding interactions to infer a binding mode and specific design parameters to optimize for CNS druglike molecules, we came to focus on the di(pyridin-2-yl)amines because of their combination of desirable potency and good brain penetration following oral dosing. Our lead inhibitor GNE-3511 (26) displayed concentration-dependent protection of neurons from degeneration in vitro and demonstrated dose-dependent activity in two different animal models of disease. These results suggest that specific pharmacological inhibition of DLK may have therapeutic potential in multiple indications.
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