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一个半保守残基通过稳定茶碱结合RNA游离状态下的相互作用来抑制复合物形成。

A semiconserved residue inhibits complex formation by stabilizing interactions in the free state of a theophylline-binding RNA.

作者信息

Zimmermann G R, Shields T P, Jenison R D, Wick C L, Pardi A

机构信息

Department of Chemistry and Biochemistry, University of Colorado at Boulder 80309-0215, USA.

出版信息

Biochemistry. 1998 Jun 23;37(25):9186-92. doi: 10.1021/bi980082s.

DOI:10.1021/bi980082s
PMID:9636066
Abstract

The theophylline-binding RNA aptamer contains a 15 nucleotide motif that is required for high-affinity ligand binding. One residue within this RNA motif is only semiconserved and can be an A or C. This residue, C27, was disordered in the previously determined three-dimensional structure of the complex, suggesting that it is dynamic in solution. 13C Relaxation measurements are reported here, demonstrating that C27 is highly dynamic in the otherwise well-ordered RNA-theophylline complex. A synthetic complex with an abasic residue at position 27 was found to exhibit wild-type binding affinity (Kd approximately 0.2 microM), indicating that the base of residue 27 is not directly involved with theophylline binding. Surprisingly, the U27 and G27 RNAs were found to bind theophylline with low affinity (Kd values > 4 microM). NMR spectroscopy on the U27 RNA revealed the presence of an A7-U27 base pair in the free RNA that prevents formation of a critical base-platform structural motif and therefore blocks theophylline binding. Similarly, a protonated A7H+-C27 base pair forms in the absence of theophylline at low pH, which explains the unusual pH dependence of theophylline binding of the C27 RNA aptamer. Thus the weak binding for various nucleotides at position 27 arises not from unfavorable interactions in the RNA-theophylline complex but instead from stable interactions in the free state of the RNA that inhibit theophylline binding.

摘要

茶碱结合RNA适配体包含一个15个核苷酸的基序,这是高亲和力配体结合所必需的。该RNA基序中的一个残基仅半保守,可以是A或C。这个残基C27在先前确定的复合物三维结构中是无序的,表明它在溶液中是动态的。本文报道了13C弛豫测量结果,表明C27在其他方面有序的RNA-茶碱复合物中高度动态。发现27位带有无碱基残基的合成复合物表现出野生型结合亲和力(Kd约为0.2 microM),表明27位残基的碱基不直接参与茶碱结合。令人惊讶的是,发现U27和G27 RNA与茶碱的结合亲和力较低(Kd值>4 microM)。对U27 RNA的核磁共振光谱分析表明,游离RNA中存在A7-U27碱基对,这阻止了关键碱基平台结构基序的形成,从而阻断了茶碱结合。同样,在低pH且不存在茶碱的情况下会形成质子化的A7H+-C27碱基对,这解释了C27 RNA适配体茶碱结合异常的pH依赖性。因此,27位各种核苷酸的弱结合不是源于RNA-茶碱复合物中的不利相互作用,而是源于RNA游离状态下抑制茶碱结合的稳定相互作用。

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