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Discovery of Entamoeba histolytica hexokinase 1 inhibitors through homology modeling and virtual screening

机译:通过同源建模和虚拟筛选发现entamoEBA组织族醇素六激酶1抑制剂

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Entamoeba histolytica, the parasite which causes amebiasis is responsible for 110 000 deaths a year. Entamoeba histolytica depends on glycolysis to obtain ATP for cellular work. According to metabolic flux studies, hexokinase exerts the highest flux control of this metabolic pathway; therefore, it is an excellent target in the search of new antiamebic drugs. To this end, a tridimensional model of E. histolytica hexokinase 1 (EhHK1) was constructed and validated by homology modeling. After virtual screening of 14 400 small molecules, the 100 with the best docking scores were selected, purchased and assessed in their inhibitory capacity. The results showed that three molecules (compounds 2921, 11275 and 2755) inhibited EhHK1 with an I-50 of 48, 91 and 96 mu M, respectively. Thus, we found the first inhibitors of EhHK1 that can be used in the search of new chemotherapeutic agents against amebiasis.
机译:entamoeba histolytica,导致Amebiasis的寄生虫每年负责110 000人死亡。 entamoeba组织olytica取决于糖醇解析以获得蜂窝作品的ATP。 根据代谢通量研究,六酮酶施加该代谢途径的最高通量控制; 因此,在寻找新的抗铝种药物中是一个很好的目标。 为此,通过同源造型构建和验证了E.的E.组织六酮酶1(EHHK1)的Tridimensional模型。 在虚拟筛选14个400个小分子之后,选择具有最佳对接分数的100,以其抑制容量购买和评估。 结果表明,三种分子(化合物2921,11275和2755)抑制了E-50的48,91和96μm的EHHK1。 因此,我们发现EHHK1的第一种抑制剂,其可用于搜索对琥珀患者的新化学治疗剂。

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