Department of Molecular and Cellular Biology, California Institute for Quantitative Biosciences, University of California, Berkeley, CA 94720-3220, USA.
Nucleic Acids Res. 2013 Jul;41(13):e133. doi: 10.1093/nar/gkt413. Epub 2013 May 16.
Topoisomerases are essential cellular enzymes that maintain the appropriate topological status of DNA and are the targets of several antibiotic and chemotherapeutic agents. High-throughput (HT) analysis is desirable to identify new topoisomerase inhibitors, but standard in vitro assays for DNA topology, such as gel electrophoresis, are time-consuming and are not amenable to HT analysis. We have exploited the observation that closed-circular DNA containing an inverted repeat can release the free energy stored in negatively supercoiled DNA by extruding the repeat as a cruciform. We inserted an inverted repeat containing a fluorophore-quencher pair into a plasmid to enable real-time monitoring of plasmid supercoiling by a bacterial topoisomerase, Escherichia coli gyrase. This substrate produces a fluorescent signal caused by the extrusion of the cruciform and separation of the labels as gyrase progressively underwinds the DNA. Subsequent relaxation by a eukaryotic topoisomerase, human topo IIα, causes reintegration of the cruciform and quenching of fluorescence. We used this approach to develop a HT screen for inhibitors of gyrase supercoiling. This work demonstrates that fluorescently labeled cruciforms are useful as general real-time indicators of changes in DNA topology that can be used to monitor the activity of DNA-dependent motor proteins.
拓扑异构酶是维持 DNA 适当拓扑状态的必需细胞酶,也是几种抗生素和化疗药物的靶点。高通量 (HT) 分析是识别新的拓扑异构酶抑制剂的理想方法,但用于 DNA 拓扑的标准体外测定法(如凝胶电泳)既耗时又不适合 HT 分析。我们利用了这样一个观察结果,即含有反向重复序列的闭环 DNA 可以通过将重复序列挤出为十字形来释放储存在负超螺旋 DNA 中的自由能。我们将含有荧光团猝灭剂对的反向重复序列插入质粒中,使细菌拓扑异构酶大肠杆菌回旋酶能够实时监测质粒超螺旋。该底物通过十字形的挤出和标签的分离产生荧光信号,因为回旋酶逐渐使 DNA 下旋。随后由真核拓扑异构酶,人拓扑异构酶 IIα 引起的再结合引起十字形的重新结合和荧光猝灭。我们使用这种方法开发了一种用于回旋酶超螺旋抑制剂的 HT 筛选。这项工作表明,荧光标记的十字形可作为 DNA 拓扑结构变化的通用实时指示剂,用于监测 DNA 依赖性马达蛋白的活性。