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Structure of influenza virus panhandle RNA studied by NMR spectroscopy and molecular modeling.

机译:通过NMR光谱和分子建模研究了流感病毒泛柄RNA的结构。

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摘要

The structure of a 34 nucleotide RNA molecule in solution, which contains the conserved panhandle sequences, was determined by NMR spectroscopy and molecular modeling. The partially double-strandedpanhandle structure of the influenza virus RNA serves to regulate initiation and termination of viral transcription as well as polyadenylation. The panhandle RNA consists of internal loop flanked by short helices. The nucleotides at or near the internal loop are crucial for polymerase binding and transcriptional activity. They show more flexible conformational character than the Watson-Crick base-paired region, especially for the backbone torsion angles of alpha, gamma and delta. Although residues A10 and A12 are stacked in the helix, the phosphodiester backbones are distorted. Residues A12, A13 and G25 show dynamic sugar conformations and the backbone conformations of these nucleotides are flexible. This backbone conformation and its associated flexibility may be important for protein-RNA interactions as well as base-specific interactions.
机译:通过NMR光谱法和分子模型确定溶液中包含保守的潘汉德尔序列的34个核苷酸的RNA分子的结构。流感病毒RNA的部分双链潘柄结构用于调节病毒转录以及聚腺苷酸化的起始和终止。泛柄RNA由短螺旋两侧的内部环组成。内部环处或附近的核苷酸对于聚合酶结合和转录活性至关重要。它们显示出比Watson-Crick碱基配对区域更灵活的构象特征,尤其是对于α,γ和δ的骨架扭转角。尽管残基A10和A12堆积在螺旋中,但磷酸二酯主链却扭曲了。残基A12,A13和G25显示动态糖构象,并且这些核苷酸的骨架构象是柔性的。这种主链构象及其相关的灵活性对于蛋白质-RNA相互作用以及碱基特异性相互作用可能很重要。

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