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Identification of Allosteric Nucleotide Sites of Tetramethylrhodamine-Labeled Aptamer for Noncompetitive Aptamer-Based Fluorescence Anisotropy Detection of a Small Molecule, Ochratoxin A

机译:基于四甲基罗丹明标记的适体的变构核苷酸位点的鉴定,用于基于非竞争性适体的荧光各向异性检测小分子O曲毒素A

摘要

Aptamer-based fluorescence anisotropy (FA) assay combines the advantages of affinity aptamers in good stability, easy generation, and facile labeling and the benefits of FA in homogeneous analysis, such as robustness, simplicity, and high reproducibility. By using a fluorophore-labeled aptamer, FA detection of a small molecule is not as easy as detection of protein because the binding of a small molecule cannot cause significant increase of molecular weight of the dye-labeled aptarner. The intramolecular interaction between labeled tetramethylrhodamine (TMR) and DNA aptamer bases dramatically affects the local rotation and FA of TMR. This intramolecular interaction can be altered by aptamer conformation change upon target binding, leading to a significant change of FA of TMR. Taking this unique feature of a TMR-labeled aptamer, we described a noncompetitive aptamer-based fluorescence anisotropy assay for detection of small molecules by using ochratoxin A (OTA) as a model. We successfully identified the specific TMR-labeling sites of aptamers with sensitive FA response to OTA from the 5'-end, 3'-end and the internal thymine (T) bases. The aptamer with a TMR labeled on the 10th T base exhibited a remarkable FA reduction response to OTA (Delta r = 0.078), without requiring any proteins or nanomaterials as FA signal enhancers. This FA approach for OTA showed high sensitivity with a detection limit of 3 nM, a dynamic range from 3 nM to 3 mu M, and good selectivity over the tested compounds with similar structures to OTA. The new strategy allowed the detection of OTA in diluted red wine and urine samples.
机译:基于适体的荧光各向异性(FA)分析结合了亲和适体的优势,具有良好的稳定性,易于生成和标记简便性,以及FA在均相分析中的优势,例如坚固性,简便性和高重现性。通过使用荧光团标记的适体,FA的检测小分子并不像检测蛋白质那样容易,因为小分子的结合不会导致染料标记的配体的分子量显着增加。标记的四甲基罗丹明(TMR)和DNA适体碱基之间的分子内相互作用极大地影响了TMR的局部旋转和FA。分子内相互作用可通过靶标结合时的适体构象改变而改变,从而导致TMR的FA的显着改变。采取TMR标记的适体的这一独特功能,我们描述了一种非竞争性的基于适体的荧光各向异性测定法,通过使用曲霉毒素A(OTA)作为模型来检测小分子。我们成功地从5'端,3'端和内部胸腺嘧啶(T)碱基成功鉴定了对OTA敏感的FA反应的适体的TMR标记位点。在第10个T碱基上标记了TMR的适体对OTA表现出显着的FA还原反应(Δr = 0.078),而无需任何蛋白质或纳米材料作为FA信号增强剂。这种用于OTA的FA方法显示出高灵敏度,检测限为3 nM,动态范围为3 nM至3μM,并且对具有与OTA类似结构的被测化合物具有良好的选择性。新策略允许在稀释的红酒和尿液样品中检测OTA。

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