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参与与双链体形成平衡的修饰2',5'-连接RNA发夹的溶液结构

Solution structure of a modified 2',5'-linked RNA hairpin involved in an equilibrium with duplex.

作者信息

Plevnik Miha, Gdaniec Zofia, Plavec Janez

机构信息

Slovenian NMR Center, National Institute of Chemistry Hajdrihova 19, PO Box, 660, SI-1001 Ljubljana, Slovenia.

出版信息

Nucleic Acids Res. 2005 Mar 23;33(6):1749-59. doi: 10.1093/nar/gki318. Print 2005.

Abstract

The isomerization of phosphodiester functionality of nucleic acids from 3',5'- to a less common 2',5'-linkage influences the complex interplay of stereoelectronic effects that drive pseudorotational equilibrium of sugar rings and thus affect the conformational propensities for compact or more extended structures. The present study highlights the subtle balance of non-covalent forces at play in structural equilibrium of 2',5'-linked RNA analogue, 3'-O-(2-methoxyethyl) substituted dodecamer CGCGAAUUCGCG, 3'-MOE-2',5'-RNA, where all cytosines and uracils are methylated at C5. The NMR and UV spectroscopic studies have shown that 3'-MOE-2',5'-RNA adopts both hairpin and duplex secondary structures, which are involved in a dynamic exchange that is slow on the NMR timescale and exhibits strand and salt concentration as well as pH dependence. Unusual effect of pH over a narrow physiological range is observed for imino proton resonances with exchange broadening observed at lower pH and relatively sharp lines observed at higher pH. The solution structure of 3'-MOE-2',5'-RNA hairpin displays a unique and well-defined loop, which is stabilized by Watson-Crick A5.U8 base pair and by n --> pi stacking interactions of O4' lone-pair electrons of A6 and *U8 with aromatic rings of A5 and *U7, respectively. In contrast, the stem region of 3'-MOE-2',5'-RNA hairpin is more flexible. Our data highlight the important feature of backbone modifications that can have pronounced effects on interstrand association of nucleic acids.

摘要

核酸磷酸二酯官能团从3',5'-连接异构化为较不常见的2',5'-连接,会影响驱动糖环假旋转平衡的立体电子效应的复杂相互作用,从而影响紧凑或更伸展结构的构象倾向。本研究突出了2',5'-连接的RNA类似物3'-O-(2-甲氧基乙基)取代的十二聚体CGCGAAUUCGCG(3'-MOE-2',5'-RNA)结构平衡中起作用的非共价力的微妙平衡,其中所有胞嘧啶和尿嘧啶在C5处甲基化。核磁共振(NMR)和紫外光谱研究表明,3'-MOE-2',5'-RNA同时采用发夹和双链二级结构,它们参与了在NMR时间尺度上缓慢的动态交换,并表现出链和盐浓度以及pH依赖性。在较窄的生理pH范围内观察到pH对亚氨基质子共振有异常影响,在较低pH下观察到交换加宽,在较高pH下观察到相对尖锐的谱线。3'-MOE-2',5'-RNA发夹的溶液结构显示出一个独特且定义明确的环,该环由沃森-克里克A5.U8碱基对以及A6和U8的O4'孤对电子分别与A5和U7的芳香环的n→π堆积相互作用稳定。相比之下,3'-MOE-2',5'-RNA发夹的茎区更灵活。我们的数据突出了主链修饰的重要特征,其可对核酸的链间缔合产生显著影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77be/1069515/f6f025118a69/gki318f1.jpg

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