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首页> 外文期刊>ChemMedChem >Design, Synthesis and Biological Evaluation of Novel Inhibitors of Trypanosoma brucei Pteridine Reductase 1
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Design, Synthesis and Biological Evaluation of Novel Inhibitors of Trypanosoma brucei Pteridine Reductase 1

机译:布鲁氏锥虫蝶啶还原酶1新型抑制剂的设计,合成及生物学评价

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摘要

Genetic studies indicate that the enzyme pteridine reductase 1 (PTR1) is essential for the survival of the protozoan parasite Trypanosoma brucei. Herein, we describe the development and optimisation of a novel series of PTR1 inhibitors, based on ben-zo[d]imidazol-2-amine derivatives. Data are reported on 33 compounds. This series was initially discovered by a virtual screening campaign (J. Med. Chem., 2009, 52, 4454). The inhibitors adopted an alternative binding mode to those of the natural ligands, biopterin and dihydrobiopterin, and classical inhibitors, such as methotrexate. Using both rational medicinal chemistry and structure-based approaches, we were able to derive compounds with potent activity against T. brucei PTR1 (K_i~(app) =7 nM), which had high selectivity over both human and T. brucei dihydrofolate reductase. Unfortunately, these compounds displayed weak activity against the parasites. Kinetic studies and analysis indicate that the main reason for the lack of cell potency is due to the compounds having insufficient potency against the enzyme, which can be seen from the low K_m to K_i ratio (K_m = 25 nut and K_i = 2.3 nM, respectively).
机译:遗传学研究表明,蝶呤还原酶1(PTR1)对于原生动物寄生虫布鲁氏锥虫的生存至关重要。在这里,我们描述了基于苯并[[]]咪唑-2-胺衍生物的一系列新型PTR1抑制剂的开发和优化。报告了33种化合物的数据。该系列最初是通过虚拟筛选活动发现的(J. Med。Chem。,2009,52,4454)。抑制剂采用与天然配体,生物蝶呤和二氢生物蝶呤的替代结合模式,以及经典的抑制剂,例如甲氨蝶呤。使用合理的药物化学方法和基于结构的方法,我们能够获得对布鲁氏杆菌PTR1具有强活性的化合物(K_i〜(app)= 7 nM),其对人和布鲁氏二氢叶酸还原酶均具有高选择性。不幸的是,这些化合物显示出对寄生虫的弱活性。动力学研究和分析表明,缺乏细胞效力的主要原因是由于化合物对酶的效力不足,这可从低的K_m与K_i比值看出(分别为K_m = 25坚果和K_i = 2.3 nM)。 )。

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