Pedró-Rosa Laura, Buckner Frederick S, Ranade Ranae M, Eberhart Christina, Madoux Franck, Gillespie J Robert, Koh Cho Yeow, Brown Steven, Lohse Jacqueline, Verlinde Christophe L M, Fan Erkang, Bannister Thomas, Scampavia Louis, Hol Wim G J, Spicer Timothy, Hodder Peter
The Scripps Research Institute Molecular Screening Center, Scripps Florida, Jupiter, FL, USA.
Department of Medicine, University of Washington, Seattle, WA, USA.
J Biomol Screen. 2015 Jan;20(1):122-30. doi: 10.1177/1087057114548832. Epub 2014 Aug 27.
Improved therapies for the treatment of Trypanosoma brucei, the etiological agent of the neglected tropical disease human African trypanosomiasis, are urgently needed. We targeted T. brucei methionyl-tRNA synthetase (MetRS), an aminoacyl-tRNA synthase (aaRS), which is considered an important drug target due to its role in protein synthesis, cell survival, and its significant differences in structure from its mammalian ortholog. Previous work using RNA interference of MetRS demonstrated growth inhibition of T. brucei, further validating it as an attractive target. We report the development and implementation of two orthogonal high-throughput screening assays to identify inhibitors of T. brucei MetRS. First, a chemiluminescence assay was implemented in a 1536-well plate format and used to monitor adenosine triphosphate depletion during the aminoacylation reaction. Hit confirmation then used a counterscreen in which adenosine monophosphate production was assessed using fluorescence polarization technology. In addition, a miniaturized cell viability assay was used to triage cytotoxic compounds. Finally, lower throughput assays involving whole parasite growth inhibition of both human and parasite MetRS were used to analyze compound selectivity and efficacy. The outcome of this high-throughput screening campaign has led to the discovery of 19 potent and selective T. brucei MetRS inhibitors.
迫切需要改进治疗人类非洲锥虫病(一种被忽视的热带疾病)病原体布氏锥虫的疗法。我们将目标对准布氏锥虫甲硫氨酰 - tRNA合成酶(MetRS),这是一种氨酰 - tRNA合成酶(aaRS),由于其在蛋白质合成、细胞存活中的作用以及与哺乳动物同源物在结构上的显著差异,它被认为是一个重要的药物靶点。先前利用MetRS的RNA干扰的研究表明布氏锥虫的生长受到抑制,这进一步证实了它是一个有吸引力的靶点。我们报告了两种正交高通量筛选测定法的开发与实施,以鉴定布氏锥虫MetRS的抑制剂。首先,在1536孔板形式中实施化学发光测定法,用于监测氨酰化反应过程中的三磷酸腺苷消耗。命中确认随后使用一种反筛选法,其中利用荧光偏振技术评估一磷酸腺苷的产生。此外,一种小型化细胞活力测定法用于筛选细胞毒性化合物。最后,采用涉及对人和寄生虫MetRS的全寄生虫生长抑制的较低通量测定法来分析化合物的选择性和功效。这次高通量筛选活动的结果导致发现了19种强效且具有选择性的布氏锥虫MetRS抑制剂。