核糖核酸
适体
荧光团
荧光
生物物理学
化学
生物化学
生物
分子生物学
细胞生物学
基因
量子力学
物理
作者
Elena V. Dolgosheina,Sunny C.Y. Jeng,S. Panchapakesan,Razvan Cojocaru,Patrick S. K. Chen,Peter D. Wilson,Nancy Hawkins,Paul A. Wiggins,Peter J. Unrau
摘要
Because RNA lacks strong intrinsic fluorescence, it has proven challenging to track RNA molecules in real time. To address this problem and to allow the purification of fluorescently tagged RNA complexes, we have selected a high affinity RNA aptamer called RNA Mango. This aptamer binds a series of thiazole orange (fluorophore) derivatives with nanomolar affinity, while increasing fluorophore fluorescence by up to 1,100-fold. Visualization of RNA Mango by single-molecule fluorescence microscopy, together with injection and imaging of RNA Mango/fluorophore complex in C. elegans gonads demonstrates the potential for live-cell RNA imaging with this system. By inserting RNA Mango into a stem loop of the bacterial 6S RNA and biotinylating the fluorophore, we demonstrate that the aptamer can be used to simultaneously fluorescently label and purify biologically important RNAs. The high affinity and fluorescent properties of RNA Mango are therefore expected to simplify the study of RNA complexes.
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