化学
氰胺
Janus激酶3
共价键
谷胱甘肽
半胱氨酸
电泳剂
组合化学
酶
药物发现
残留物(化学)
生物化学
药理学
立体化学
有机化学
体外
催化作用
细胞毒性T细胞
医学
抗原提呈细胞
作者
Agustin Casimiro‐Garcia,John I. Trujillo,F.F. Vajdos,Brian Juba,Mary Ellen Banker,Ann Aulabaugh,Paul Balbo,Jonathan Bauman,Jill Chrencik,Jotham W. Coe,Robert Czerwiński,Martin E. Dowty,John D. Knafels,Soojin Kwon,Louis Leung,Sidney Liang,Ralph P. Robinson,Jean‐Baptiste Telliez,Ray Unwalla,Xin Yang
标识
DOI:10.1021/acs.jmedchem.8b01308
摘要
Ongoing interest in the discovery of selective JAK3 inhibitors led us to design novel covalent inhibitors that engage the JAK3 residue Cys909 by cyanamide, a structurally and mechanistically differentiated electrophile from other cysteine reacting groups previously incorporated in JAK3 covalent inhibitors. Through crystallography, kinetic, and computational studies, interaction of cyanamide 12 with Cys909 was optimized leading to potent and selective JAK3 inhibitors as exemplified by 32. In relevant cell-based assays and in agreement with previous results from this group, 32 demonstrated that selective inhibition of JAK3 is sufficient to drive JAK1/JAK3-mediated cellular responses. The contribution from extrahepatic processes to the clearance of cyanamide-based covalent inhibitors was also characterized using metabolic and pharmacokinetic data for 12. This work also gave key insights into a productive approach to decrease glutathione/glutathione S-transferase-mediated clearance, a challenge typically encountered during the discovery of covalent kinase inhibitors.
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