化学空间
药效团
多巴胺
立体化学
受体
对接(动物)
化学
计算生物学
兴奋剂
组合化学
生物
生物化学
医学
药物发现
神经科学
兽医学
作者
Jiankun Lyu,Sheng Wang,Trent E. Balius,Isha Singh,Anat Levit,Yurii S. Moroz,Matthew J. O’Meara,Tao Che,Enkhjargal Algaa,Kateryna A. Tolmachova,Andrey A. Tolmachev,Brian K. Shoichet,Bryan L. Roth,John J. Irwin
出处
期刊:Nature
[Nature Portfolio]
日期:2019-02-06
卷期号:566 (7743): 224-229
被引量:747
标识
DOI:10.1038/s41586-019-0917-9
摘要
Despite intense interest in expanding chemical space, libraries containing hundreds-of-millions to billions of diverse molecules have remained inaccessible. Here we investigate structure-based docking of 170 million make-on-demand compounds from 130 well-characterized reactions. The resulting library is diverse, representing over 10.7 million scaffolds that are otherwise unavailable. For each compound in the library, docking against AmpC β-lactamase (AmpC) and the D4 dopamine receptor were simulated. From the top-ranking molecules, 44 and 549 compounds were synthesized and tested for interactions with AmpC and the D4 dopamine receptor, respectively. We found a phenolate inhibitor of AmpC, which revealed a group of inhibitors without known precedent. This molecule was optimized to 77 nM, which places it among the most potent non-covalent AmpC inhibitors known. Crystal structures of this and other AmpC inhibitors confirmed the docking predictions. Against the D4 dopamine receptor, hit rates fell almost monotonically with docking score, and a hit-rate versus score curve predicted that the library contained 453,000 ligands for the D4 dopamine receptor. Of 81 new chemotypes discovered, 30 showed submicromolar activity, including a 180-pM subtype-selective agonist of the D4 dopamine receptor.
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