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Site-specific dual-color labeling of long RNAs for single-molecule spectroscopy

机译:用于单分子光谱的长RNA的特异性双色标记

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摘要

Labeling of long RNA molecules in a site-specific yet generally applicable manner is integral to many spectroscopic applications. Here we present a novel covalent labeling approach that is site-specific and scalable to long intricately folded RNAs. In this approach, a custom-designed DNA strand that hybridizes to the RNA guides a reactive group to target a preselected adenine residue. The functionalized nucleotide along with the concomitantly oxidized 3'-terminus can subsequently be conjugated to two different fluorophores via bio-orthogonal chemistry. We validate this modular labeling platform using a regulatory RNA of 275 nucleotides, the btuB riboswitch of Escherichia coli, demonstrate its general applicability by modifying a base within a duplex, and show its site-selectivity in targeting a pair of adjacent adenines. Native folding and function of the RNA is confirmed on the single-molecule level by using FRET as a sensor to visualize and characterize the conformational equilibrium of the riboswitch upon binding of its cofactor adenosylcobalamin. The presented labeling strategy overcomes size and site constraints that have hampered routine production of labeled RNA that are beyond 200 nt in length.
机译:以特异性特异性但通常适用的方式标记长RNA分子是多于许多光谱应用的一体。在这里,我们提出了一种新的共价标记方法,其是特定于特定于特定的并且可扩展到长错折叠的RNA。在这种方法中,定制设计的DNA链,其与RNA杂交引导反应性基团以靶向预选的腺嘌呤残余物。官能化核苷酸随后可以通过生物正交化学将其与两种不同的荧光团缀合至两种不同的荧光团。我们使用275个核苷酸的调节RNA验证该模块化标记平台,Escherichia Coli的Btub Riboswitch,通过修饰双链体内的碱来证明其一般适用性,并显示其在靶向一对相邻的腺嘌呤时选择性。通过使用FRET作为传感器在单分子水平上确认RNA的本机折叠和功能,以便在其Cofactor腺苷钴胺蛋白结合时可视化和表征核糖开关的构象平衡。所呈现的标签策略克服了常规产生的常规产生的常规产生的标记RNA的长度超过200nt。

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