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I类自剪接内含子P1螺旋的结构。

Structure of the P1 helix from group I self-splicing introns.

作者信息

Allain F H, Varani G

机构信息

MRC Laboratory of Molecular Biology, Cambridge, England.

出版信息

J Mol Biol. 1995 Jul 14;250(3):333-53. doi: 10.1006/jmbi.1995.0381.

Abstract

The upstream cleavage site of group I self-splicing introns is identified by an absolutely conserved U.G base-pair within a double helix. Mutant introns with a wobble C.A substitute are catalytically active, but all other combinations of nucleotides at these positions abolish splicing, suggesting that an unusual RNA structure generated by the wobble pair is recognized by the catalytic intron core. The solution structure of a 20-mer oligonucleotide containing a UUCG tetraloop hairpin and a U.G wobble pair within a double helix was determined by NMR spectroscopy without any assumptions on RNA conformation. Isotopically (15N/13C)-labelled RNA was used to collect an unusually large number of experimental constraints (703 in total, corresponding to approximately 35 constraints per nucleotide) leading to the determination of a structure with very high precision (overall root-mean-square-deviation (rmsd) between 20 converged structures 1.22 A, local rmsd 0.6 A for the tetraloop and 0.85 A for the stem). Analysis of the double helical structure at the conserved U.G wobble pair reveals local distortions from the regular A-form pattern, that may constitute the characteristic feature of U.G wobble pair recognized by the group I intron core and by amino acyl tRNA synthetases. Re-examination of the previously determined tetraloop structure reveals a novel U.G base-pair with a syn guanosine and hydrogen bonding contacts involving both base protons and a sugar 2'-OH. This explains the great stability of RNA UUCG loops when compared with DNA loops of identical sequence, and is one of the first NMR observations of RNA 2'-OH resonances.

摘要

I类自我剪接内含子的上游切割位点是由双螺旋内一个绝对保守的U.G碱基对确定的。具有摆动C.A替代的突变内含子具有催化活性,但这些位置上核苷酸的所有其他组合都会消除剪接,这表明摆动对产生的异常RNA结构被催化内含子核心所识别。通过核磁共振光谱法测定了一种20聚体寡核苷酸的溶液结构,该寡核苷酸在双螺旋内包含一个UUCG四环发夹和一个U.G摆动对,且对RNA构象没有任何假设。使用同位素(15N/13C)标记的RNA收集了异常大量的实验约束条件(总共703个,相当于每个核苷酸约35个约束条件),从而确定了一个精度非常高的结构(20个收敛结构之间的总体均方根偏差(rmsd)为1.22 Å,四环的局部rmsd为0.6 Å,茎的局部rmsd为0.85 Å)。对保守的U.G摆动对处的双螺旋结构分析揭示了与规则A形式模式的局部扭曲,这可能构成了被I类内含子核心和氨酰tRNA合成酶识别的U.G摆动对的特征。对先前确定的四环结构的重新检查揭示了一种新的U.G碱基对,其中鸟苷为顺式,氢键接触涉及碱基质子和糖2'-OH。这解释了与相同序列的DNA环相比,RNA UUCG环具有更高的稳定性,并且这是对RNA 2'-OH共振的首批核磁共振观察结果之一。

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