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The solution structure of double helical arabino nucleic acids (ANA and 2 ' F-ANA): effect of arabinoses in duplex-hairpin interconversion

机译:双螺旋阿拉伯核酸(ANA和2'F-ANA)的溶液结构:阿拉伯糖酶在双发夹互变中的作用

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We report here the first structure of double helical arabino nucleic acid (ANA), the C2′-stereoisomer of RNA, and the 2′-fluoro-ANA analogue (2′F-ANA). A chimeric dodecamer based on the Dickerson sequence, containing a contiguous central segment of arabino nucleotides, flanked by two 2′-deoxy-2′F-ANA wings was studied. Our data show that this chimeric oligonucleotide can adopt two different structures of comparable thermal stabilities. One structure is a monomeric hairpin in which the stem is formed by base paired 2′F-ANA nucleotides and the loop by unpaired ANA nucleotides. The second structure is a bimolecular duplex, with all the nucleotides (2′F-ANA and ANA) forming Watson–Crick base pairs. The duplex structure is canonical B-form, with all arabinoses adopting a pure C2′-endo conformation. In the ANA:ANA segment, steric interactions involving the 2′-OH substituent provoke slight changes in the glycosidic angles and, therefore, in the ANA:ANA base pair geometry. These distortions are not present in the 2′F-ANA:2′F-ANA regions of the duplex, where the –OH substituent is replaced by a smaller fluorine atom. 2′F-ANA nucleotides adopt the C2′-endo sugar pucker and fit very well into the geometry of B-form duplex, allowing for favourable 2′F···H8 interactions. This interaction shares many features of pseudo-hydrogen bonds previously observed in 2′F-ANA:RNA hybrids and in single 2′F-ANA nucleotides.
机译:我们在这里报告双螺旋阿拉伯核酸(ANA),RNA的C2'-立体异构体和2'-fluoro-ANA类似物(2'F-ANA)的第一结构。研究了基于Dickerson序列的嵌合十二聚体,其包含阿拉伯糖核苷酸的连续中央部分,两侧为两个2'-脱氧-2'F-ANA侧翼。我们的数据表明,该嵌合寡核苷酸可以采用具有相当的热稳定性的两种不同结构。一种结构是单体发夹,其中茎由碱基配对的2'F-ANA核苷酸形成,而环由未配对的ANA核苷酸形成。第二个结构是双分子双链体,所有核苷酸(2'F-ANA和ANA)形成沃森-克里克碱基对。双链体结构是标准的B型,所有阿拉伯糖酶均采用纯C2'-内切构象。在ANA:ANA片段中,涉及2'-OH取代基的空间相互作用会引起糖苷角的微小变化,从而引起ANA:ANA碱基对的几何形状发生轻微变化。这些畸变不存在于双链体的2'F-ANA:2'F-ANA区域中,其中–OH取代基被较小的氟原子取代。 2'F-ANA核苷酸采用C2'-糖基折叠,非常适合B型双链体的几何结构,从而有利于2'F···H8相互作用。这种相互作用具有以前在2'F-ANA:RNA杂种和单个2'F-ANA核苷酸中观察到的伪氢键的许多特征。

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