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A target-based high throughput screen yields Trypanosoma brucei hexokinase small molecule inhibitors with antiparasitic activity.

机译:基于目标的高通量筛选可产生具有抗寄生虫活性的布鲁氏锥虫己糖激酶小分子抑制剂。

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摘要

BACKGROUND: The parasitic protozoan Trypanosoma brucei utilizes glycolysis exclusively for ATP production during infection of the mammalian host. The first step in this metabolic pathway is mediated by hexokinase (TbHK), an enzyme essential to the parasite that transfers the gamma-phospho of ATP to a hexose. Here we describe the identification and confirmation of novel small molecule inhibitors of bacterially expressed TbHK1, one of two TbHKs expressed by T. brucei, using a high throughput screening assay. METHODOLOGY/PRINCIPAL FINDINGS: Exploiting optimized high throughput screening assay procedures, we interrogated 220,233 unique compounds and identified 239 active compounds from which ten small molecules were further characterized. Computation chemical cluster analyses indicated that six compounds were structurally related while the remaining four compounds were classified as unrelated or singletons. All ten compounds were approximately 20-17,000-fold more potent than lonidamine, a previously identified TbHK1 inhibitor. Seven compounds inhibited T. brucei blood stage form parasite growth (0.03
机译:背景:寄生虫原生动物Trypanosoma brucei在哺乳动物宿主感染过程中仅利用糖酵解来产生ATP。此代谢途径的第一步是由己糖激酶(TbHK)介导的,该酶是将ATP的γ-磷酸转移到己糖中的寄生虫必不可少的酶。在这里,我们描述了使用高通量筛选测定法鉴定和确认细菌表达的TbHK1(由布鲁氏杆菌表达的两个TbHKs之一)的新型小分子抑制剂。方法论/主要发现:利用优化的高通量筛选分析程序,我们询问了220,233种独特的化合物,并鉴定了239种活性化合物,从中进一步鉴定了十个小分子。计算化学簇分析表明,六种化合物在结构上相关,而其余四种化合物被分类为不相关或单例。所有十种化合物的功效均比以前鉴定的TbHK1抑制剂lonidamine强约20-17,000倍。七种化合物抑制布鲁氏杆菌血阶段形成寄生虫生长(0.03

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