Mai Deborah, Jones Jennifer, Rodgers John W, Hartman John L, Kutsch Olaf, Steyn Adrie J C
The Department of Microbiology, University of Alabama at Birmingham, USA.
Assay Drug Dev Technol. 2011 Jun;9(3):299-310. doi: 10.1089/adt.2010.0326. Epub 2011 Jan 31.
Despite extensive efforts in tuberculosis (TB) drug research, very few novel inhibitors have been discovered. This issue emphasizes the need for innovative methods to discover new anti-TB drugs. In this study, we established a new high-throughput screen (HTS) platform technology that differs from traditional TB drug screens because it utilizes Mycobacterial-Protein Fragment Complementation (M-PFC) to identify small molecule inhibitors of protein-protein interactions in mycobacteria. Several examples of protein-protein interactions were tested with M-PFC to highlight the diversity of selectable drug targets that could be used for screening. These included interactions of essential regulators (IdeR dimerization), enzymatic complexes (LeuCD), secretory antigens (Cfp10-Esat6), and signaling pathways (DevR dimerization). The feasibility of M-PFC in a HTS platform setting was tested by performing a proof-of-concept quantitative HTS of 3,600 small molecule compounds on DevR-DevR interaction, which was chosen because of its strong implications in Mycobacterium tuberculosis persistence and the need for effective drugs against latent TB. The calculated Z'-factor was consistently ≥0.8, indicating a robust and reproducible assay. Completion of the proof-of-concept screen allowed for the identification of advantages and disadvantages in the current assay design, where improvements made will further pioneer M-PFC-based applications in a large-scale HTS format.
尽管在结核病药物研究方面付出了巨大努力,但发现的新型抑制剂却寥寥无几。这一问题凸显了采用创新方法发现新型抗结核药物的必要性。在本研究中,我们建立了一种新的高通量筛选(HTS)平台技术,它不同于传统的结核病药物筛选方法,因为它利用分枝杆菌蛋白片段互补(M-PFC)来鉴定分枝杆菌中蛋白质-蛋白质相互作用的小分子抑制剂。我们用M-PFC测试了几个蛋白质-蛋白质相互作用的例子,以突出可用于筛选的可选药物靶点的多样性。这些相互作用包括必需调节因子的相互作用(IdeR二聚化)、酶复合物(LeuCD)、分泌抗原(Cfp10-Esat6)和信号通路(DevR二聚化)。通过对3600种小分子化合物进行DevR-DevR相互作用的概念验证定量高通量筛选,测试了M-PFC在高通量筛选平台设置中的可行性。选择DevR-DevR相互作用进行测试是因为它对结核分枝杆菌的持续存在有重要影响,并且需要有效的抗潜伏性结核病药物。计算得到的Z'因子始终≥0.8,表明该检测方法稳健且可重复。概念验证筛选的完成有助于确定当前检测设计中的优点和缺点,在此基础上做出的改进将进一步推动基于M-PFC的大规模高通量筛选应用。