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能以亚微摩尔解离常数和高对映选择性结合L-精氨酸的RNA适配体。

RNA aptamers that bind L-arginine with sub-micromolar dissociation constants and high enantioselectivity.

作者信息

Geiger A, Burgstaller P, von der Eltz H, Roeder A, Famulok M

机构信息

Institut fur Biochemie, Genzentrum der Ludwig-Maximilians-Universität München, Germany.

出版信息

Nucleic Acids Res. 1996 Mar 15;24(6):1029-36. doi: 10.1093/nar/24.6.1029.

Abstract

A completely randomized RNA pool as well as a degenerate pool comprised of an RNA sequence which binds citrulline with a dissociation constant of 0 muM were used to select for tight binding arginine specific RNA aptamers. A modified in vitro selection scheme, based on affinity chromatography was applied to allow the enrichment of high affinity solution binders. The selection scheme included a negative selection with the non-cognate ligand citrulline, and a heat denaturation step prior to affinity elution with an excess of the cognate ligand arginine. After 20 cycles the majority of the pools bound specifically to the arginine matrix even after denaturation/renaturation in the presence of 20 mM of a non-cognate amino acid. When denatured and eluted in the presence of 20 mM arginine, the selected RNAs quantitatively washed off the column. These RNA aptamers were cloned and sequenced. Equilibrium dialysis performed with the most abundant clone among the selected sequence revealed Kd values of 330 nM for the RNA/arginine affinity, which is nearly a 200-fold improvement over the tightest binding arginine binding RNAs known to date. Arginine recognition by this RNA is highly enantioselectice: L- arginine is bound 12 000-fold better than D-arginine. Chemical modification analysis revealed that the secondary structure of the aptamer might contain a pseudoknot motif. Our tight binding arginine aptamers join a number of natural and in vitro selected RNAs which recognize arginine. The RNAs described here compare in their binding affinity with the tightest binding RNA aptamers for low molecular weight molecules isolated in other in vitro selection experiments.

摘要

使用一个完全随机的RNA文库以及一个由与瓜氨酸结合解离常数为0 μM的RNA序列组成的简并文库来筛选紧密结合精氨酸的特异性RNA适配体。应用一种基于亲和色谱的改良体外筛选方案,以富集高亲和力的溶液结合物。该筛选方案包括用非同源配体瓜氨酸进行负筛选,以及在用过量同源配体精氨酸进行亲和洗脱之前的热变性步骤。经过20轮筛选后,即使在存在20 mM非同源氨基酸的情况下进行变性/复性,大多数文库仍能特异性结合精氨酸基质。当在20 mM精氨酸存在下变性并洗脱时,所选RNA定量地从柱上洗脱下来。这些RNA适配体被克隆并测序。对所选序列中最丰富的克隆进行平衡透析,结果显示RNA/精氨酸亲和力的Kd值为330 nM,这比迄今为止已知的结合最紧密的精氨酸结合RNA有近200倍的提高。该RNA对精氨酸的识别具有高度对映选择性:L-精氨酸的结合能力比D-精氨酸高12000倍。化学修饰分析表明,适配体的二级结构可能包含一个假结基序。我们紧密结合精氨酸的适配体加入了许多识别精氨酸的天然和体外筛选的RNA。这里描述的RNA在结合亲和力方面与其他体外筛选实验中分离出的对低分子量分子结合最紧密的RNA适配体相当。

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