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RNA芒果适体-荧光团:一种用于RNA标记和追踪的明亮、高亲和力复合物。

RNA mango aptamer-fluorophore: a bright, high-affinity complex for RNA labeling and tracking.

作者信息

Dolgosheina Elena V, Jeng Sunny C Y, Panchapakesan Shanker Shyam S, Cojocaru Razvan, Chen Patrick S K, Wilson Peter D, Hawkins Nancy, Wiggins Paul A, Unrau Peter J

机构信息

Department of Molecular Biology and Biochemistry and ‡Department of Chemistry, Simon Fraser University , 8888 University Road, Burnaby, British Columbia V5A 1S6, Canada.

出版信息

ACS Chem Biol. 2014 Oct 17;9(10):2412-20. doi: 10.1021/cb500499x. Epub 2014 Aug 21.

Abstract

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.

摘要

由于RNA缺乏强烈的固有荧光,实时追踪RNA分子已被证明具有挑战性。为了解决这个问题并实现荧光标记的RNA复合物的纯化,我们选择了一种名为RNA Mango的高亲和力RNA适配体。这种适配体以纳摩尔亲和力结合一系列噻唑橙(荧光团)衍生物,同时使荧光团的荧光增强高达1100倍。通过单分子荧光显微镜观察RNA Mango,以及在秀丽隐杆线虫性腺中注射和成像RNA Mango/荧光团复合物,证明了该系统用于活细胞RNA成像的潜力。通过将RNA Mango插入细菌6S RNA的茎环中并对荧光团进行生物素化,我们证明了该适配体可用于同时对生物学上重要的RNA进行荧光标记和纯化。因此,预计RNA Mango的高亲和力和荧光特性将简化RNA复合物的研究。

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