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J Fluoresc. 2010 Nov;20(6):1211-23. doi: 10.1007/s10895-010-0670-9. Epub 2010 May 5.
A novel high-throughput screening method is described in which a family of DNA aptamers selected against E. coli outer membrane proteins (OMPs) is subjected to PCR in the presence of fluorophore-dUTP conjugates using Deep Vent® exo- polymerase. The fluorophore-doped aptamers and their complementary strands are then heated to render them single-stranded and screened in filter well microtiter plates for fluorescence resonance energy transfer (FRET) assay potential. Using this system, a superior competitive FRET-aptamer designated EcO 4R was identified and the location of its putative binding pocket was determined by individually testing FRET potential in each of the secondary loop structures. By labeling the binding pocket with Alexa Fluor (AF) 647 and binding the aptamer to heavily Black Hole Quencher-3 (BHQ-3)-labeled E. coli bacteria, detection of as few as 30 live unlabeled E. coli per ml was achieved in a competitive displacement FRET assay format. The far red fluorescence emission enables detection in largely blue-green autofluorescent matrices. In addition, the competitive transfer of AF 647-EcO-4R aptamer to unlabeled E. coli cells after a 15 min equilibration period was verified by fluorescence microscopy. The present study also demonstrated that high aptamer affinity is not well correlated with competitive FRET potential.
描述了一种新的高通量筛选方法,该方法使用 Deep Vent® exo- 聚合酶在存在荧光素-dUTP 缀合物的情况下对针对大肠杆菌外膜蛋白 (OMP) 的 DNA 适体家族进行 PCR。然后将荧光染料掺杂的适体及其互补链加热至单链状态,并在滤膜微孔板中筛选,以进行荧光共振能量转移 (FRET) 测定潜能。使用该系统,鉴定出一种优越的竞争性 FRET-适体 EcO 4R,并通过在每个二级环结构中单独测试 FRET 潜能来确定其假定结合口袋的位置。通过用 Alexa Fluor (AF) 647 标记结合口袋,并将适体与大量 Black Hole Quencher-3 (BHQ-3) 标记的大肠杆菌结合,在竞争性置换 FRET 测定格式中,每毫升可检测到多达 30 个活的未标记的大肠杆菌。远红荧光发射使得能够在主要为蓝绿色自体荧光基质中进行检测。此外,通过荧光显微镜验证了在 15 分钟平衡期后,AF 647-EcO-4R 适体向未标记的大肠杆菌细胞的竞争性转移。本研究还表明,高适体亲和力与竞争性 FRET 潜能没有很好的相关性。