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二甲基亚砜对RNA结构及配体结合的影响。

Influence of dimethylsulfoxide on RNA structure and ligand binding.

作者信息

Lee Janghyun, Vogt Catherine E, McBrairty Mitchell, Al-Hashimi Hashim M

机构信息

Department of Chemistry and Biophysics, University of Michigan , 930 North University Avenue, Ann Arbor, Michigan 48109, United States.

出版信息

Anal Chem. 2013 Oct 15;85(20):9692-8. doi: 10.1021/ac402038t. Epub 2013 Sep 25.

Abstract

Dimethyl sulfoxide (DMSO) is widely used as a cosolvent to solubilize hydrophobic compounds in RNA-ligand binding assays. Although it is known that high concentrations of DMSO (>75%) can significantly affect RNA structure and folding energetics, a thorough analysis of how lower concentrations (<10%) of DMSO typically used in binding assays affects RNA structure and ligand binding has not been undertaken. Here, we use NMR and 2-aminopurine fluorescence spectroscopy to examine how DMSO affects the structure, dynamics, and ligand binding properties of two flexible hairpin RNAs: the transactivation response element from HIV-1 and bacterial ribosomal A-site. In both cases, 5-10% DMSO decreased stacking interactions and increased local disorder in noncanonical residues within bulges and loops and resulted in 0.3-4-fold reduction in the measured binding affinities for different small molecules, with the greatest reduction observed for an intercalating compound that binds RNA nonspecifically. Our results suggest that, by competing for hydrophobic interactions, DMSO can have a small but significant effect on RNA structure and ligand binding. These effects should be considered when developing ligand binding assays and high throughput screens.

摘要

二甲基亚砜(DMSO)在RNA-配体结合实验中被广泛用作助溶剂,以溶解疏水性化合物。尽管已知高浓度的DMSO(>75%)会显著影响RNA的结构和折叠能量学,但尚未对结合实验中通常使用的较低浓度(<10%)的DMSO如何影响RNA结构和配体结合进行全面分析。在此,我们使用核磁共振(NMR)和2-氨基嘌呤荧光光谱来研究DMSO如何影响两种柔性发夹RNA的结构、动力学和配体结合特性:HIV-1的反式激活应答元件和细菌核糖体A位点。在这两种情况下,5-10%的DMSO都会减少堆积相互作用,并增加凸起和环中非规范残基的局部无序性,导致不同小分子的测量结合亲和力降低0.3-4倍,对于非特异性结合RNA的嵌入化合物,观察到的亲和力降低最大。我们的结果表明,通过竞争疏水相互作用,DMSO可以对RNA结构和配体结合产生微小但显著的影响。在开发配体结合实验和高通量筛选时,应考虑这些影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f282/3855037/c0d4f0fc166b/nihms527785f1.jpg

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