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首页> 外文期刊>Journal of biomolecular screening: The official journal of the Society for Biomolecular Screening >A high-throughput, homogeneous, Bioluminescent assay for Pseudomonas aeruginosa gyrase inhibitors and other DNA-damaging agents
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A high-throughput, homogeneous, Bioluminescent assay for Pseudomonas aeruginosa gyrase inhibitors and other DNA-damaging agents

机译:铜绿假单胞菌回旋酶抑制剂和其他DNA破坏剂的高通量均一生物发光测定

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摘要

A homogeneous, sensitive, cellular bioluminescent high-throughput screen was developed for inhibitors of gyrase and other DNA-damaging agents in Pseudomonas aeruginosa. The screen is based on a Photorhabdus luminescens luciferase operon transcriptional fusion to a promoter that responds to DNA damage caused by reduced gyrase levels and fluoroquinolone inhibition. This reporter strain is sensitive to levels of ciprofloxacin as low as one-fourth minimum inhibitory concentration (MIC) with Z' scores greater than 0.5, indicating the assay is suitable for high-throughput screening. This screen combines the benefits of a whole-cell assay with a sensitivity and target specificity superior to those of traditional cell-based screens for inhibitors of viability or growth. In duplicate pilot screens of 2000 known bioactive compounds, 13 compounds generated reproducible signals >50% of that of the control (ciprofloxacin at one-half MIC) using bioluminescence readings after 7 h of incubation. Ten are fluoroquinolones known to cause accumulation of cleaved DNA-enzyme complexes in bacterial cells; the other 3 are known to create DNA adducts. Therefore, all 13 hits inhibit DNA synthesis but by a variety of different DNA-damaging mechanisms. This convenient, inexpensive screen will be useful for rapidly identifying DNA gyrase inhibitors and other DNA-damaging agents, which may lead to potent new antibacterials.
机译:针对铜绿假单胞菌中的回旋酶和其他DNA破坏剂的抑制剂,开发了一种均匀,灵敏的细胞生物发光高通量筛选技术。该筛选基于光致发光杆菌荧光素酶操纵子与启动子的转录融合,该启动子响应由降低的回旋酶水平和抑制氟喹诺酮引起的DNA损伤。该报告株对环丙沙星的水平敏感,环丙沙星的水平低至Z'值大于0.5的四分之一最小抑菌浓度(MIC),表明该测定适用于高通量筛选。该筛选结合了全细胞测定的优势,灵敏度和靶标特异性优于传统的基于细胞的活性或生长抑制剂筛选。在孵育7小时后,使用生物发光读数,在2000种已知生物活性化合物的两次先导筛选中,有13种化合物产生的可再现信号>对照信号的50%(环丙沙星在半个MIC时)。已知十种氟喹诺酮类会导致裂解的DNA-酶复合物在细菌细胞中积累;已知其他3种会产生DNA加合物。因此,所有13个命中都抑制DNA合成,但是通过多种不同的DNA破坏机制。这种方便,廉价的筛选方法可用于快速鉴定DNA促旋酶抑制剂和其他DNA破坏剂,这些试剂可能会导致产生强效的新细菌。

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