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一种异常稳定的RNA发夹结构5'GGAC(UUCG)GUCC的溶液结构

Solution structure of an unusually stable RNA hairpin, 5'GGAC(UUCG)GUCC.

作者信息

Cheong C, Varani G, Tinoco I

机构信息

Department of Chemistry, University of California, Berkeley 94720.

出版信息

Nature. 1990 Aug 16;346(6285):680-2. doi: 10.1038/346680a0.

Abstract

Hairpin loops are important structural elements of RNA, helping to define the three-dimensional structure of large RNAs and providing potential nucleation sites for RNA folding and interaction with other nucleic acids and proteins. Little, however, is known about the conformation of RNA hairpins, most of what we know coming from transfer RNA crystal structures and from studies of DNA hairpins. We report here the determination of the structure of a very stable and common RNA hairpin, 5'GGAC(UUCG)GUCC (loop nucleotides in parenthesis), by NMR spectroscopy. The sequence C(UUCG)G occurs very often in RNA and may be a nucleation site for RNA folding and a protein-binding site. A high-resolution structure for the hairpin was derived from interproton distances and scalar coupling constants determined by NMR. The loop is stabilized by a G.U base pair, with guanine in the syn conformation, a cytosine-phosphate contact and extensive base stacking. These findings and other structural features of the loop can explain the unusual stability of the hairpin and suggest why reverse transcriptase cannot read through the loop, although it can transcribe through other kinds of RNA secondary structure.

摘要

发夹环是RNA重要的结构元件,有助于确定大型RNA的三维结构,并为RNA折叠以及与其他核酸和蛋白质的相互作用提供潜在的成核位点。然而,我们对RNA发夹环的构象了解甚少,目前所知的大部分信息来自转运RNA的晶体结构以及对DNA发夹环的研究。我们在此报告通过核磁共振光谱法测定了一种非常稳定且常见的RNA发夹环5'GGAC(UUCG)GUCC(括号内为环核苷酸)的结构。序列C(UUCG)G在RNA中非常常见,可能是RNA折叠的成核位点和蛋白质结合位点。该发夹环的高分辨率结构源自通过核磁共振测定的质子间距离和标量耦合常数。该环通过一个G·U碱基对、一个胞嘧啶-磷酸接触以及广泛的碱基堆积得以稳定。这些发现以及该环的其他结构特征可以解释发夹环异常的稳定性,并说明为什么逆转录酶虽然可以转录通过其他种类的RNA二级结构,但却无法通读该环。

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