化学
小分子
共晶
药代动力学
虚拟筛选
体内
体外
连接器
生物利用度
配体(生物化学)
药理学
CD38
结构-活动关系
吡唑
立体化学
药物发现
离体
组合化学
共价键
铅化合物
血浆蛋白结合
星团(航天器)
变构调节
生物化学
结合位点
数量结构-活动关系
酶
分子模型
酶抑制剂
分子
作者
Reza Shiroodi,Timothy J. Montavon,Brandon M. Nelson,John T. Randolph,Daniel E. O’Flynn,Leo Iu,Charles W. Hutchins,Tomas Baikstis,Javier Izquierdo,D. M. Smyth,Navasona Krishnan,Mohammad Mehdi Maneshi,Jordan W. Brown,Gustavo A. Afanador,Rinku Jain,Sarathy Karunan Partha,Lance Bigelow,Boguslaw Nocek,Lukas Talaga,Sujatha M. Gopalakrishnan
标识
DOI:10.1021/acs.jmedchem.6c00171
摘要
Herein, we report the discovery and optimization of a series of cluster of differentiation 38 (CD38) inhibitors derived from a virtual ligand screening (VLS) campaign. VLS identified imidazopyridazine hit 9, which was optimized to a novel and potent CD38 inhibitor peripheral tool 25 (A-8531) with an excellent pharmacokinetic profile. A cocrystal structure in addition to biophysical and biochemical characterization of 25 is consistent with uncompetitive inhibition of CD38 via the formation of covalent adduct 28. Further structure- and property-based modifications of 25 afforded sulfuryl pyrazole 39 (A-3190) with improved CNS distribution properties. Brain-penetrant thienopyrimidine 39 shows robust rodent pharmacokinetics and in vivo target engagement across skin, lung, liver, and brain, making it an excellent CD38 tool for the study of indications requiring engagement of CD38 in the brain.
科研通智能强力驱动
Strongly Powered by AbleSci AI