葛兰素史克-3
化学
结构-活动关系
磷酸化
酶
激酶
化学空间
糖原合酶
计算生物学
药理学
生物化学
神经科学
药物发现
体外
医学
生物
作者
Prasanna Sivaprakasam,Xiaojun Han,Rita L. Civiello,Swanee Jacutin-Porte,Kevin Kish,Matt Pokross,H.A. Lewis,Nazia Ahmed,Nicolas Szapiel,John A. Newitt,Eric T. Baldwin,Hong Xiao,Carol Krause,Hyunsoo Park,Michelle Nophsker,Jonathan Lippy,Catherine R. Burton,David R. Langley,John E. Macor,Gene M. Dubowchik
标识
DOI:10.1016/j.bmcl.2015.03.046
摘要
Glycogen synthase kinase-3 (GSK-3) has been proposed to play a crucial role in the pathogenesis of many diseases including cancer, stroke, bipolar disorders, diabetes and neurodegenerative diseases. GSK-3 inhibition has been a major area of pharmaceutical interest over the last two decades. A plethora of reports appeared recently on selective inhibitors and their co-crystal structures in GSK-3β. We identified several series of promising new GSK-3β inhibitors from a coherent design around a pyrrolopyridinone core structure. A systematic exploration of the chemical space around the central spacer led to potent single digit and sub-nanomolar GSK-3β inhibitors. When dosed orally in a transgenic mouse model of Alzheimer’s disease (AD), an exemplary compound showed significant lowering of Tau phosphorylation at one of the GSK-3 phosphorylating sites, Ser396. X-ray crystallography greatly aided in validating the binding hypotheses.
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