化学
配体效率
亲脂性
效力
皮兰
生物利用度
吡唑
选择性
组合化学
药物发现
公制(单位)
立体化学
溶解度
配体(生物化学)
药理学
有机化学
体外
生物化学
医学
运营管理
受体
经济
催化作用
作者
Tony Siu,Jason D. Brubaker,Peter H. Fuller,Luis Ángel Pérula de Torres,Hongbo Zeng,Joshua Close,Dawn M. Mampreian,Feng Shi,Duan Liu,Xavier Fradera,Kevin C. Johnson,Nathan Bays,Elma Kadić,He Fang,Peter Goldenblatt,Lynsey Shaffer,Sangita B. Patel,Charles A. Lesburg,Carla Alpert,Lauren Dorosh
标识
DOI:10.1021/acs.jmedchem.7b01135
摘要
The discovery of a potent selective low dose Janus kinase 1 (JAK1) inhibitor suitable for clinical evaluation is described. As part of an overall goal to minimize dose, we pursued a medicinal chemistry strategy focused on optimization of key parameters that influence dose size, including lowering human Clint and increasing intrinsic potency, bioavailability, and solubility. To impact these multiple parameters simultaneously, we used lipophilic ligand efficiency as a key metric to track changes in the physicochemical properties of our analogs, which led to improvements in overall compound quality. In parallel, structural information guided advancements in JAK1 selectivity by informing on new vector space, which enabled the discovery of a unique key amino acid difference between JAK1 (Glu966) and JAK2 (Asp939). This difference was exploited to consistently produce analogs with the best balance of JAK1 selectivity, efficacy, and projected human dose, ultimately culminating in the discovery of compound 28.
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