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首页> 外文期刊>ACS Omega >Discovery of Ligand-Efficient Scaffolds for the Design of Novel Trichomonas vaginalis Uridine Nucleoside Ribohydrolase Inhibitors Using Fragment Screening
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Discovery of Ligand-Efficient Scaffolds for the Design of Novel Trichomonas vaginalis Uridine Nucleoside Ribohydrolase Inhibitors Using Fragment Screening

机译:配体高效支架的发现,用于使用片段筛选设计新型阴道毛滴虫尿苷核苷核糖水解酶抑制剂。

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Trichomoniasis is caused by the parasitic protozoan Trichomonas vaginalis. The increasing prevalence of strains resistant to the current 5-nitroimidazole treatments creates the need for novel therapies. T. vaginalis cannot synthesize purine and pyrimidine rings and requires salvage pathway enzymes to obtain them from host nucleosides. The uridine nucleoside ribohydrolase was screened using an 19F NMR-based activity assay against a 2000-compound fragment diversity library. Several series of inhibitors were identified including scaffolds based on acetamides, cyclic ureas or ureas, pyridines, and pyrrolidines. A number of potent singleton compounds were identified, as well. Eighteen compounds with IC50 values of 20 μM or lower were identified, including some with ligand efficiency values of 0.5 or greater. Detergent and jump-dilution counter screens validated all scaffold classes as target-specific, reversible inhibitors. Identified scaffolds differ substantially from 5-nitroimidazoles. Medicinal chemistry using the structure–activity relationship emerging from the fragment hits is being pursued to discover nanomolar inhibitors.
机译:毛滴虫病是由寄生的原生动物阴道毛滴虫引起的。对目前的5-硝基咪唑治疗有抗药性的菌株的流行增加,因此需要新的疗法。阴道锥虫不能合成嘌呤和嘧啶环,需要挽救途径的酶才能从宿主核苷中获得它们。使用基于19F NMR的活性测定法针对2000化合物的片段多样性文库筛选尿苷核苷核糖水解酶。鉴定了几种抑制剂,包括基于乙酰胺的支架,环状脲或脲,吡啶和吡咯烷。还确定了许多有效的单分子化合物。鉴定出18种化合物的IC50值为20μM或更低,包括一些配体效率值为0.5或更高的化合物。洗涤剂和跳跃稀释计数器筛选验证了所有支架类均是靶标特异性可逆抑制剂。鉴定出的支架与5-硝基咪唑基本不同。正在寻求利用从片段命中中发现的结构-活性关系的药物化学来发现纳摩尔抑制剂。

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