Jacobsson Micael, Gäredal Magnus, Schultz Johan, Karlén Anders
iNovacia AB, Lindhagensgatan 133, SE-112 51 Stockholm, Sweden.
J Med Chem. 2008 May 8;51(9):2777-86. doi: 10.1021/jm7016144. Epub 2008 Apr 12.
Seven novel binders, binding in the active site of Plasmodium falciparum spermidine synthase, were identified by structure-based virtual screening. The binding of these compounds was experimentally verified by NMR techniques. Spermidine synthase, an enzyme involved in the polyamine pathway, has been suggested as a target for treating malaria. The virtual screening protocol combined 3D pharmacophore filtering, docking, and scoring, focusing on finding compounds predicted to form interactions mimicking those of a previously known binder. The virtual screen resulted in the selection of 28 compounds that were acquired and tested from 2.6 million starting structures. Two of the seven binders were predicted to bind in the amino substrate binding pocket. Both of these showed stronger binding upon addition of methylthioadenosine, one of the two products of the enzyme, and a known binder and inhibitor. The five other compounds were predicted to bind in the part of the active site where the other substrate, decarboxylated S-adenosylmethionine, binds. These five compounds all competed for binding with methylthioadenosine.
通过基于结构的虚拟筛选,鉴定出七种新型结合剂,它们结合在恶性疟原虫亚精胺合酶的活性位点。这些化合物的结合通过核磁共振技术进行了实验验证。亚精胺合酶是一种参与多胺途径的酶,已被建议作为治疗疟疾的靶点。虚拟筛选方案结合了三维药效团过滤、对接和评分,重点是寻找预测能形成与先前已知结合剂相互作用类似的化合物。虚拟筛选从260万个起始结构中选出了28种化合物进行获取和测试。七种结合剂中的两种预计结合在氨基底物结合口袋中。在添加该酶的两种产物之一、已知的结合剂和抑制剂甲硫腺苷后,这两种结合剂均表现出更强的结合能力。其他五种化合物预计结合在另一种底物脱羧S-腺苷甲硫氨酸结合的活性位点区域。这五种化合物都与甲硫腺苷竞争结合。