化学
选择性
体内
激酶
胺气处理
铅化合物
生物化学
效力
乙酰化
体外
药理学
基因
生物
有机化学
生物技术
催化作用
作者
James J. Crawford,Wendy Lee,Ignacio Aliagas,Simon Mathieu,Klaus P. Hoeflich,Wei Zhou,Weiru Wang,Lionel Rougé,Lesley Murray,Hank La,Ning Liu,Peter W. Fan,Jonathan Cheong,Christopher E. Heise,Sreemathy Ramaswamy,Robert Mintzer,Yanzhou Liu,Qi Chao,Joachim Rudolph
标识
DOI:10.1021/acs.jmedchem.5b00572
摘要
The p21-activated kinases (PAKs) play important roles in cytoskeletal organization, cellular morphogenesis, and survival and have generated significant attention as potential therapeutic targets for cancer. Following a high-throughput screen, we identified an aminopyrazole scaffold-based series that was optimized to yield group I selective PAK inhibitors. A structure-based design effort aimed at targeting the ribose pocket for both potency and selectivity led to much-improved group I vs II selectivity. Early lead compounds contained a basic primary amine, which was found to be a major metabolic soft spot with in vivo clearance proceeding predominantly via N-acetylation. We succeeded in identifying replacements with improved metabolic stability, leading to compounds with lower in vivo rodent clearance and excellent group I PAK selectivity.
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