Screening the MayBridge Rule of 3 Fragment Library for Compounds That Interact with the Trypanosoma brucei myo-Inositol-3-Phosphate Synthase and/or Show Trypanocidal Activity.

Molecular biology international Pub Date : 2011-01-01 Epub Date: 2011-05-17 DOI:10.4061/2011/389364
Louise L Major, Terry K Smith
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引用次数: 13

Abstract

Inositol-3-phosphate synthase (INO1) has previously been genetically validated as a drug target against Trypanosoma brucei, the causative agent of African sleeping sickness. Chemical intervention of this essential enzyme could lead to new therapeutic agents. Unfortunately, no potent inhibitors of INO1 from any organism have been reported, so a screen for potential novel inhibitors of T. brucei INO1was undertaken. Detection of inhibition of T. brucei INO1 is problematic due to the nature of the reaction. Direct detection requires differentiation between glucose-6-phosphate and inositol-3-phosphate. Coupled enzyme assays could give false positives as potentially they could inhibit the coupling enzyme. Thus, an alternative approach of differential scanning fluorimetry to identify compounds that interact with T. brucei INO1 was employed to screen ~670 compounds from the MayBridge Rule of 3 Fragment Library. This approach identified 38 compounds, which significantly altered the T(m) of TbINO1. Four compounds showed trypanocidal activity with ED50s in the tens of micromolar range, with 2 having a selectivity index in excess of 250. The trypanocidal and general cytotoxicity activities of all of the compounds in the library are also reported, with the best having ED50S of ~20 μM against T. brucei.

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筛选与布氏锥虫肌醇-3-磷酸合酶相互作用和/或显示杀锥虫活性的化合物的MayBridge规则3片段文库。
肌醇-3-磷酸合成酶(INO1)先前已被遗传学证实是一种针对布鲁氏锥虫的药物靶点,布鲁氏锥虫是非洲昏睡病的病原体。对这种必需酶的化学干预可以产生新的治疗药物。不幸的是,目前还没有从任何生物体中发现INO1的有效抑制剂,因此对布鲁氏T. INO1进行了筛选。由于反应的性质,检测对布鲁氏T. INO1的抑制是有问题的。直接检测需要区分葡萄糖-6-磷酸和肌醇-3-磷酸。偶联酶测定可能会产生假阳性,因为它们可能会抑制偶联酶。因此,采用差示扫描荧光法鉴定与布鲁氏杆菌INO1相互作用的化合物,从MayBridge规则3片段文库中筛选了约670个化合物。该方法鉴定出38个化合物,这些化合物显著改变了tbin01的T(m)。4个化合物对ed50的选择性在几十微摩尔范围内,其中2个化合物的选择性指数超过250。文库中所有化合物对布氏锥虫的杀伤活性和一般细胞毒活性均有报道,其中对布氏锥虫的ED50S最高可达20 μM。
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