化学
选择性
部分
代谢稳定性
生物利用度
结构-活动关系
立体化学
膜透性
组合化学
配体(生物化学)
膜
药理学
体外
生物化学
受体
催化作用
医学
作者
Mark Zak,Christopher A. Hurley,Stuart I. Ward,Philippe Bergeron,Kathy Barrett,Mercedesz Balázs,Wade Blair,Richard J. Bull,Paroma Chakravarty,Christine Chang,Peter H. Crackett,Gauri Deshmukh,Jason DeVoss,Peter S. Dragovich,Charles Eigenbrot,Charles Ellwood,Simon Gaines,Nico Ghilardi,Paul Gibbons,Stefan Gradl
摘要
Herein we report on the structure-based discovery of a C-2 hydroxyethyl moiety which provided consistently high levels of selectivity for JAK1 over JAK2 to the imidazopyrrolopyridine series of JAK1 inhibitors. X-ray structures of a C-2 hydroxyethyl analogue in complex with both JAK1 and JAK2 revealed differential ligand/protein interactions between the two isoforms and offered an explanation for the observed selectivity. Analysis of historical data from related molecules was used to develop a set of physicochemical compound design parameters to impart desirable properties such as acceptable membrane permeability, potent whole blood activity, and a high degree of metabolic stability. This work culminated in the identification of a highly JAK1 selective compound (31) exhibiting favorable oral bioavailability across a range of preclinical species and robust efficacy in a rat CIA model.
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