To investigate large library docking's ability to find molecules with joint activity against on-targets and selectivity versus antitargets, the dopamine D2 and serotonin 5-HT2A receptors were targeted, seeking selectivity against the histamine H1 receptor. In a second campaign, κ-opioid receptor ligands were sought with selectivity versus the μ-opioid receptor. While hit rates ranged from 40% to 63% against the on-targets, they were just as good against the antitargets, even though the molecules were selected for their putative lack of binding to the off-targets. Affinities, too, were often as good or better for the off-targets. Even though it was occasionally possible to find selective molecules, such as a mid-nanomolar D2/5-HT2A ligand with 21-fold selectivity versus the H1 receptor, this was the exception. Whereas false-negatives are tolerable in docking screens against on-targets, they are intolerable against antitargets; addressing this problem may demand new strategies in the field.

译文

:为了研究大型文库对接的能力,以发现对目标具有联合活性且对反目标具有选择性的分子,我们以多巴胺D2和5-羟色胺5-HT2A受体为目标,寻求对组胺H1受体的选择性。在第二项活动中,寻求与μ阿片受体相比具有选择性的κ阿片受体配体。尽管针对靶点的命中率介于40%至63%之间,但即使针对分子假定缺乏与靶点的结合力来选择分子,其对靶点的抵抗力也一样好。亲和力对于脱靶者通常也一样好或更好。尽管偶尔可能找到选择性分子,例如相对于H1受体具有21倍选择性的中等纳摩尔级D2 / 5-HT2A配体,但这是例外。假阴性在对接目标上的对接屏幕中是可以容忍的,而在反目标上则是不能容忍的。解决此问题可能需要该领域的新策略。

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