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首页> 外文期刊>Journal of Molecular Biology >Crystal structure of an RNA quadruplex containing inosine tetrad: Implications for the roles of NH2 group in purine tetrads
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Crystal structure of an RNA quadruplex containing inosine tetrad: Implications for the roles of NH2 group in purine tetrads

机译:含肌苷四联体的RNA四链体的晶体结构:对嘌呤四联体中NH 2基团的作用的暗示

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摘要

Polyinosinic acid has been known to adopt the four-stranded helical structure but its basic unit, inosine tetrad (I tetrad), has not been determined at the atomic level. Here we report the crystal structure of an RNA quadruplex containing an I tetrad at 1.4 angstrom resolution. The I tetrad has one cyclic hydrogen bond N1...O6 with the bond length of 2.7 angstrom. A water bridge is observed in the minor groove side of the base tetrad. Even though it is sandwiched by guanine tetrads (G tetrads), the I tetrad is buckled towards the 3' side of the tetrad plane, which results from the different interaction strength with K ions on two sides of the tetrad plane. Comparison with both G tetrad and adenine tetrad indicates that lack of NH2 in the C2 position makes the I tetrad prone to buckle for interactions with ligands. Two U*(G-G-G-G) base pentads are observed at the junction of the 5' termini of two quadruplexes. The uridine residue in the base pentad is engaged in two hydrogen bonding interactions (N2(G)-H...O2(U) and O2'(G)-H...O4(U)) and a water-mediated interaction (N3(G) and N3(U)) with the G tetrad. We also discuss the roles of amino group in purine tetrads and the inter-quadruplex interactions in RNA molecules. These quadruplexes may interact with each other by stacking, groove binding and intercalation. (c) 2006 Elsevier Ltd. All rights reserved.
机译:聚肌苷酸已知采用四链螺旋结构,但是其基本单元肌苷四联体(Itetrad)尚未在原子水平上确定。在这里,我们报告了一个RNA四链体的晶体结构,该四链体包含一个1.4埃分辨率的四联体。第一个四环原子具有一个环氢键N1 ... O6,其键长为2.7埃。在基座四边形的小凹槽侧观察到水桥。即使被鸟嘌呤四联体(G四联体)夹在中间,I四联体也向四联体平面的3'侧弯曲,这是由于在四联体平面的两侧与K离子的相互作用强度不同而导致的。与Gtetrad和Adeninetetrad的比较表明,在C2位置缺少NH2使得Itetrad易于弯曲以与配体相互作用。在两个四重体的5'末端的交界处观察到两个U *(G-G-G-G)基五单元组。基础五单元组中的尿苷残基参与两个氢键相互作用(N2(G)-H ... O2(U)和O2'(G)-H ... O4(U))和水介导的相互作用(N3(G)和N3(U))和G四元组。我们还讨论了嘌呤四联体中氨基的作用以及RNA分子中四链体之间的相互作用。这些四链体可以通过堆叠,凹槽结合和嵌入彼此相互作用。 (c)2006 Elsevier Ltd.保留所有权利。

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