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双峰环-环相互作用增加了RNA适体对HIV-1 RNA结构的亲和力。

Bimodal loop-loop interactions increase the affinity of RNA aptamers for HIV-1 RNA structures.

作者信息

Boucard David, Toulmé Jean-Jacques, Di Primo Carmelo

机构信息

Université Victor Segalen, Bordeaux, F-33076, France, INSERM U386, Bordeaux, F-33076, France, and Institut Européen de Chimie et Biologie, Pessac, F-33607, France.

出版信息

Biochemistry. 2006 Feb 7;45(5):1518-24. doi: 10.1021/bi051187f.

Abstract

Multiple loop-loop interactions between adjacent RNA hairpins regulate gene expression in different organisms. To demonstrate that such natural interactions could be mimicked for generating RNA ligands that are able to recognize simultaneously at least two structured RNA targets, a double kissing complex model was designed. The target consisted of two HIV-1 transactivating responsive (TAR) RNA variants, BRU and MAL, connected by a non-nucleotidic linker. The double ligand was generated by combining the corresponding hairpin aptamers, R06BRU and R06MAL, identified previously by in vitro selection [Ducongé, F., and Toulmé, J. J (1999) RNA 5, 1605-1614]. The resulting interaction was analyzed by thermal denaturation monitored by UV spectroscopy, electrophoretic mobility shift assays (EMSAs), and surface plasmon resonance (SPR) experiments. The bimodal complex was characterized by a binding equilibrium constant increased by at least 1 order of magnitude compared to that of the complexes between the individual parent hairpins. This resulted from a slower dissociation rate. We then made use of such a strategy for targeting two structured functional motifs of the folded 5' untranslated region (5'UTR) of HIV-1. Two bivalent RNA ligands were designed that targeted simultaneously the TAR and dimerization initiation site (DIS) hairpins or the TAR and poly(A) ones. The results show that these ligands also displayed enhanced affinity for their target compared to the individual molecules. The work reported here suggests that bimodal structured RNA ligands might provide a way of increasing the affinity of aptamers for folded RNA targets.

摘要

相邻RNA发夹之间的多重环-环相互作用调节不同生物体中的基因表达。为了证明可以模拟这种天然相互作用来生成能够同时识别至少两个结构化RNA靶标的RNA配体,设计了一种双亲吻复合体模型。靶标由两个HIV-1反式激活应答(TAR)RNA变体BRU和MAL组成,它们通过一个非核苷酸接头连接。双配体是通过将先前通过体外筛选鉴定的相应发夹适体R06BRU和R06MAL组合而成的[Ducongé, F., and Toulmé, J. J (1999) RNA 5, 1605-1614]。通过紫外光谱监测的热变性、电泳迁移率变动分析(EMSA)和表面等离子体共振(SPR)实验对产生的相互作用进行了分析。与单个亲本发夹之间的复合体相比,双峰复合体的特征是结合平衡常数增加了至少1个数量级。这是由于解离速率较慢所致。然后,我们利用这种策略靶向HIV-1折叠的5'非翻译区(5'UTR)的两个结构化功能基序。设计了两种二价RNA配体,它们同时靶向TAR和二聚化起始位点(DIS)发夹或TAR和聚(A)发夹。结果表明,与单个分子相比,这些配体对其靶标的亲和力也有所增强。本文报道的工作表明,双峰结构化RNA配体可能提供一种提高适体对折叠RNA靶标亲和力的方法。

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