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Molecular recognition of amino acids by RNA aptamers: the evolution into an L-tyrosine binder of a dopamine-binding RNA motif.

机译:RNA适体对氨基酸的分子识别:多巴胺结合RNA图案演变成L-酪氨酸结合剂。

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摘要

We report the evolution of an RNA aptamer to change its binding specificity. RNA aptamers that bind the free amino acid tyrosine were in vitro selected from a degenerate pool derived from a previously selected dopamine aptamer. Three independent sequences bind tyrosine in solution, the winner of the selection binding with a dissociation constant of 35 microM. Competitive affinity chromatography with tyrosine-related ligands indicated that the selected aptamers are highly L-stereo selective and also recognize L-tryptophan and L-dopa with similar affinity. The binding site was localized by sequence comparison, analysis of minimal boundaries, and structural probing upon ligand binding. Tyrosine-binding sites are characterized by the presence of both tyrosine (UAU and UAC) and termination (UAG and UAA) triplets.
机译:我们报告了RNA适体的进化,以改变其结合特异性。结合游离氨基酸酪氨酸的RNA适体从体外选自先前选择的多巴胺适体的简并库中选择。三个独立的序列与溶液中的酪氨酸结合,选择结合的胜者具有35 microM的解离常数。具有酪氨酸相关配体的竞争性亲和色谱表明,所选的适体具有很高的L-立体选择性,并且还可以类似的亲和力识别L-色氨酸和L-多巴。通过序列比较,最小边界分析和配体结合后的结构探测来定位结合位点。酪氨酸结合位点的特征是酪氨酸(UAU和UAC)和终止(UAG和UAA)三联体同时存在。

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