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Site-specific terminal and internal labeling of RNA by poly(A) polymerase tailing and copper-catalyzed or copper-free strain-promoted click chemistry

机译:聚(A)聚合酶拖尾和铜催化的或无铜的应变促进的点击化学对RNA的位点末端和内部标记

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摘要

The modification of RNA with fluorophores, affinity tags and reactive moieties is of enormous utility for studying RNA localization, structure and dynamics as well as diverse biological phenomena involving RNA as an interacting partner. Here we report a labeling approach in which the RNA of interest—of either synthetic or biological origin—is modified at its 3′-end by a poly(A) polymerase with an azido-derivatized nucleotide. The azide is later on conjugated via copper-catalyzed or strain-promoted azide–alkyne click reaction. Under optimized conditions, a single modified nucleotide of choice (A, C, G, U) containing an azide at the 2′-position can be incorporated site-specifically. We have identified ligases that tolerate the presence of a 2′-azido group at the ligation site. This azide is subsequently reacted with a fluorophore alkyne. With this stepwise approach, we are able to achieve site-specific, internal backbone-labeling of de novo synthesized RNA molecules.
机译:用荧光团,亲和标签和反应性部分修饰RNA对研究RNA定位,结构和动力学以及涉及RNA作为相互作用伴侣的多种生物学现象具有巨大的实用性。在这里,我们报道了一种标记方法,其中合成或生物学来源的目标RNA在其3'端被带有叠氮基衍生核苷酸的poly(A)聚合酶修饰。叠氮化物随后通过铜催化或应变促进的叠氮化物-炔点击反应偶联。在优化的条件下,可以在位点特异性地掺入选择的单个修饰核苷酸(A,C,G,U),该核苷酸在2'-位含有叠氮化物。我们已经确定了在连接位点耐受2'-叠氮基存在的连接酶。随后使该叠氮化物与荧光团炔烃反应。通过这种逐步方法,我们能够实现从头合成的RNA分子的位点特异性,内部骨架标记。

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