药效团
化学
吲哚胺2,3-双加氧酶
酶
合理设计
计算生物学
小分子
数量结构-活动关系
对接(动物)
生物化学
双加氧酶
组合化学
结合亲和力
立体化学
色氨酸
纳米技术
氨基酸
生物
护理部
医学
受体
材料科学
作者
Ute F. Röhrig,Loay Awad,Aurélien Grosdidier,Pierre Larrieu,Vincent Stroobant,Didier Colau,Vincenzo Cerundolo,Andrew J.G. Simpson,Pierre Vogel,Benoı̂t J. Van den Eynde,Vincent Zoete,Olivier Michielin
摘要
Indoleamine 2,3-dioxygenase (IDO) is an important therapeutic target for the treatment of diseases such as cancer that involve pathological immune escape. We have used the evolutionary docking algorithm EADock to design new inhibitors of this enzyme. First, we investigated the modes of binding of all known IDO inhibitors. On the basis of the observed docked conformations, we developed a pharmacophore model, which was then used to devise new compounds to be tested for IDO inhibition. We also used a fragment-based approach to design and to optimize small organic molecule inhibitors. Both approaches yielded several new low-molecular weight inhibitor scaffolds, the most active being of nanomolar potency in an enzymatic assay. Cellular assays confirmed the potential biological relevance of four different scaffolds.
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